{"id":238780,"date":"2026-01-15T04:44:13","date_gmt":"2026-01-15T04:44:13","guid":{"rendered":"https:\/\/www.newsbeep.com\/il\/238780\/"},"modified":"2026-01-15T04:44:13","modified_gmt":"2026-01-15T04:44:13","slug":"impact-of-electronic-correlations-on-the-superconductivity-of-high-pressure-ceh9","status":"publish","type":"post","link":"https:\/\/www.newsbeep.com\/il\/238780\/","title":{"rendered":"Impact of electronic correlations on the superconductivity of high-pressure CeH9"},"content":{"rendered":"<p class=\"c-article-references__text\" id=\"ref-CR1\">Ashcroft, N. W. Metallic hydrogen: A high-temperature superconductor? Phys. Rev. Lett. 21, 1748\u20131749 (1968).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevLett.21.1748\" data-track-item_id=\"10.1103\/PhysRevLett.21.1748\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevLett.21.1748\" aria-label=\"Article reference 1\" data-doi=\"10.1103\/PhysRevLett.21.1748\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DyaF1MXktF2gsQ%3D%3D\" aria-label=\"CAS reference 1\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 1\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Metallic%20hydrogen%3A%20A%20high-temperature%20superconductor%3F&amp;journal=Phys.%20Rev.%20Lett.&amp;doi=10.1103%2FPhysRevLett.21.1748&amp;volume=21&amp;pages=1748-1749&amp;publication_year=1968&amp;author=Ashcroft%2CNW\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR2\">Ashcroft, N. W. Hydrogen dominant metallic alloys: High temperature superconductors? Phys. Rev. Lett. 92, 187002 (2004).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevLett.92.187002\" data-track-item_id=\"10.1103\/PhysRevLett.92.187002\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevLett.92.187002\" aria-label=\"Article reference 2\" data-doi=\"10.1103\/PhysRevLett.92.187002\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:STN:280:DC%2BD2c3ntVWgsQ%3D%3D\" aria-label=\"CAS reference 2\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=15169525\" aria-label=\"PubMed reference 2\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 2\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Hydrogen%20dominant%20metallic%20alloys%3A%20High%20temperature%20superconductors%3F&amp;journal=Phys.%20Rev.%20Lett.&amp;doi=10.1103%2FPhysRevLett.92.187002&amp;volume=92&amp;publication_year=2004&amp;author=Ashcroft%2CNW\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR3\">Ashcroft, N. W. Bridgman\u2019s high-pressure atomic destructibility and its growing legacy of ordered states. J. Phys. Condens. Matter 16, S945 (2004).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1088\/0953-8984\/16\/14\/003\" data-track-item_id=\"10.1088\/0953-8984\/16\/14\/003\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1088%2F0953-8984%2F16%2F14%2F003\" aria-label=\"Article reference 3\" data-doi=\"10.1088\/0953-8984\/16\/14\/003\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BD2cXjslGit70%3D\" aria-label=\"CAS reference 3\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 3\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Bridgman%E2%80%99s%20high-pressure%20atomic%20destructibility%20and%20its%20growing%20legacy%20of%20ordered%20states&amp;journal=J.%20Phys.%20Condens.%20Matter&amp;doi=10.1088%2F0953-8984%2F16%2F14%2F003&amp;volume=16&amp;publication_year=2004&amp;author=Ashcroft%2CNW\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR4\">Boeri, L. et al. The 2021 room-temperature superconductivity roadmap. J. Phys. Cond. Matter 34, 183002 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1088\/1361-648X\/ac2864\" data-track-item_id=\"10.1088\/1361-648X\/ac2864\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1088%2F1361-648X%2Fac2864\" aria-label=\"Article reference 4\" data-doi=\"10.1088\/1361-648X\/ac2864\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 4\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=The%202021%20room-temperature%20superconductivity%20roadmap&amp;journal=J.%20Phys.%20Cond.%20Matter&amp;doi=10.1088%2F1361-648X%2Fac2864&amp;volume=34&amp;publication_year=2022&amp;author=Boeri%2CL\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR5\">Drozdov, A. P. et al. Superconductivity at 250 K in lanthanum hydride under high pressures. Nature 569, 528\u2013531 (2019).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1038\/s41586-019-1201-8\" data-track-item_id=\"10.1038\/s41586-019-1201-8\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41586-019-1201-8\" aria-label=\"Article reference 5\" data-doi=\"10.1038\/s41586-019-1201-8\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC1MXhtVegsbrF\" aria-label=\"CAS reference 5\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=31118520\" aria-label=\"PubMed reference 5\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 5\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Superconductivity%20at%20250%20K%20in%20lanthanum%20hydride%20under%20high%20pressures&amp;journal=Nature&amp;doi=10.1038%2Fs41586-019-1201-8&amp;volume=569&amp;pages=528-531&amp;publication_year=2019&amp;author=Drozdov%2CAP\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR6\">Somayazulu, M. et al. Evidence for Superconductivity above 260 K in lanthanum superhydride at megabar pressures. Phys. Rev. Lett. 122, 027001 (2019).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevLett.122.027001\" data-track-item_id=\"10.1103\/PhysRevLett.122.027001\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevLett.122.027001\" aria-label=\"Article reference 6\" data-doi=\"10.1103\/PhysRevLett.122.027001\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC1MXnvFSqsrk%3D\" aria-label=\"CAS reference 6\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=30720326\" aria-label=\"PubMed reference 6\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 6\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Evidence%20for%20Superconductivity%20above%20260%20K%20in%20lanthanum%20superhydride%20at%20megabar%20pressures&amp;journal=Phys.%20Rev.%20Lett.&amp;doi=10.1103%2FPhysRevLett.122.027001&amp;volume=122&amp;publication_year=2019&amp;author=Somayazulu%2CM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR7\">Hong, F. et al. Superconductivity of lanthanum superhydride investigated using the standard four-probe configuration under high pressures. Chin. Phys. Lett. 37, 107401 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1088\/0256-307X\/37\/10\/107401\" data-track-item_id=\"10.1088\/0256-307X\/37\/10\/107401\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1088%2F0256-307X%2F37%2F10%2F107401\" aria-label=\"Article reference 7\" data-doi=\"10.1088\/0256-307X\/37\/10\/107401\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3cXisFSrtLvO\" aria-label=\"CAS reference 7\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 7\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Superconductivity%20of%20lanthanum%20superhydride%20investigated%20using%20the%20standard%20four-probe%20configuration%20under%20high%20pressures&amp;journal=Chin.%20Phys.%20Lett.&amp;doi=10.1088%2F0256-307X%2F37%2F10%2F107401&amp;volume=37&amp;publication_year=2020&amp;author=Hong%2CF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR8\">Sun, D. et al. High-temperature superconductivity on the verge of a structural instability in lanthanum superhydride. Nat. Commun. 12, 6863 (2021).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1038\/s41467-021-26706-w\" data-track-item_id=\"10.1038\/s41467-021-26706-w\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41467-021-26706-w\" aria-label=\"Article reference 8\" data-doi=\"10.1038\/s41467-021-26706-w\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3MXisFyhtrjI\" aria-label=\"CAS reference 8\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=34824193\" aria-label=\"PubMed reference 8\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed central reference\" data-track-action=\"pubmed central reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/pmc\/articles\/PMC8617267\" aria-label=\"PubMed Central reference 8\" target=\"_blank\">PubMed Central<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 8\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=High-temperature%20superconductivity%20on%20the%20verge%20of%20a%20structural%20instability%20in%20lanthanum%20superhydride&amp;journal=Nat.%20Commun.&amp;doi=10.1038%2Fs41467-021-26706-w&amp;volume=12&amp;publication_year=2021&amp;author=Sun%2CD\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR9\">Chen, W. et al. High-temperature superconducting phases in cerium superhydride with a Tc up to 115 K below a pressure of 1 megabar. Phys. Rev. Lett. 127, 117001 (2021).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevLett.127.117001\" data-track-item_id=\"10.1103\/PhysRevLett.127.117001\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevLett.127.117001\" aria-label=\"Article reference 9\" data-doi=\"10.1103\/PhysRevLett.127.117001\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3MXitFGntbrF\" aria-label=\"CAS reference 9\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=34558917\" aria-label=\"PubMed reference 9\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 9\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=High-temperature%20superconducting%20phases%20in%20cerium%20superhydride%20with%20a%20Tc%20up%20to%20115%20K%20below%20a%20pressure%20of%201%20megabar&amp;journal=Phys.%20Rev.%20Lett.&amp;doi=10.1103%2FPhysRevLett.127.117001&amp;volume=127&amp;publication_year=2021&amp;author=Chen%2CW\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR10\">Cao, Z.-Y. et al. Probing superconducting gap in CeH9 under pressure. arXiv preprint arXiv: <a href=\"https:\/\/doi.org\/10.48550\/arXiv.2401.12682\" data-track=\"click_references\" data-track-action=\"external reference\" data-track-value=\"external reference\" data-track-label=\"10.48550\/arXiv.2401.12682\" rel=\"nofollow noopener\" target=\"_blank\">https:\/\/doi.org\/10.48550\/arXiv.2401.12682<\/a> (2024).<\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR11\">Semenok, D. et al. Evidence for pseudogap phase in cerium superhydrides: CeH10 and CeH9. arXiv preprint arXiv: <a href=\"http:\/\/arxiv.org\/abs\/2307.11742\" data-track=\"click_references\" data-track-action=\"external reference\" data-track-value=\"external reference\" data-track-label=\"http:\/\/arxiv.org\/abs\/2307.11742\" rel=\"nofollow noopener\" target=\"_blank\">https:\/\/arxiv.org\/abs\/2307.11742<\/a> (2023).<\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR12\">Peng, F. et al. Hydrogen clathrate structures in rare earth hydrides at high pressures: possible route to room-temperature superconductivity. Phys. Rev. Lett. 119, 107001 (2017).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevLett.119.107001\" data-track-item_id=\"10.1103\/PhysRevLett.119.107001\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevLett.119.107001\" aria-label=\"Article reference 12\" data-doi=\"10.1103\/PhysRevLett.119.107001\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=28949166\" aria-label=\"PubMed reference 12\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 12\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Hydrogen%20clathrate%20structures%20in%20rare%20earth%20hydrides%20at%20high%20pressures%3A%20possible%20route%20to%20room-temperature%20superconductivity&amp;journal=Phys.%20Rev.%20Lett.&amp;doi=10.1103%2FPhysRevLett.119.107001&amp;volume=119&amp;publication_year=2017&amp;author=Peng%2CF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR13\">Sun, W., Kuang, X., Keen, H. D. J., Lu, C. &amp; Hermann, A. Second group of high-pressure high-temperature lanthanide polyhydride superconductors. Phys. Rev. B 102, 144524 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.102.144524\" data-track-item_id=\"10.1103\/PhysRevB.102.144524\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.102.144524\" aria-label=\"Article reference 13\" data-doi=\"10.1103\/PhysRevB.102.144524\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3cXitlegtLbN\" aria-label=\"CAS reference 13\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 13\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Second%20group%20of%20high-pressure%20high-temperature%20lanthanide%20polyhydride%20superconductors&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.102.144524&amp;volume=102&amp;publication_year=2020&amp;author=Sun%2CW&amp;author=Kuang%2CX&amp;author=Keen%2CHDJ&amp;author=Lu%2CC&amp;author=Hermann%2CA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR14\">Guo, J., Chen, S., Chen, W., Huang, X. &amp; Cui, T. Advances in the synthesis and superconductivity of lanthanide polyhydrides under high pressure. Front. Electron. Mater. 2, 906213 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.3389\/femat.2022.906213\" data-track-item_id=\"10.3389\/femat.2022.906213\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.3389%2Ffemat.2022.906213\" aria-label=\"Article reference 14\" data-doi=\"10.3389\/femat.2022.906213\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 14\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Advances%20in%20the%20synthesis%20and%20superconductivity%20of%20lanthanide%20polyhydrides%20under%20high%20pressure&amp;journal=Front.%20Electron.%20Mater.&amp;doi=10.3389%2Ffemat.2022.906213&amp;volume=2&amp;publication_year=2022&amp;author=Guo%2CJ&amp;author=Chen%2CS&amp;author=Chen%2CW&amp;author=Huang%2CX&amp;author=Cui%2CT\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR15\">Zhong, X. et al. Prediction of above-room-temperature superconductivity in lanthanide\/actinide extreme superhydrides. J. Am. Chem. Soc. 144, 13394\u201313400 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1021\/jacs.2c05834\" data-track-item_id=\"10.1021\/jacs.2c05834\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1021%2Fjacs.2c05834\" aria-label=\"Article reference 15\" data-doi=\"10.1021\/jacs.2c05834\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB38XhslOrurvN\" aria-label=\"CAS reference 15\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=35820372\" aria-label=\"PubMed reference 15\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 15\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Prediction%20of%20above-room-temperature%20superconductivity%20in%20lanthanide%2Factinide%20extreme%20superhydrides&amp;journal=J.%20Am.%20Chem.%20Soc.&amp;doi=10.1021%2Fjacs.2c05834&amp;volume=144&amp;pages=13394-13400&amp;publication_year=2022&amp;author=Zhong%2CX\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR16\">Zhou, D. et al. Superconducting praseodymium superhydrides. Sci. Adv. 6, eaax6849 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1126\/sciadv.aax6849\" data-track-item_id=\"10.1126\/sciadv.aax6849\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1126%2Fsciadv.aax6849\" aria-label=\"Article reference 16\" data-doi=\"10.1126\/sciadv.aax6849\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3cXitFGms7jO\" aria-label=\"CAS reference 16\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=32158937\" aria-label=\"PubMed reference 16\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed central reference\" data-track-action=\"pubmed central reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/pmc\/articles\/PMC7048426\" aria-label=\"PubMed Central reference 16\" target=\"_blank\">PubMed Central<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 16\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Superconducting%20praseodymium%20superhydrides&amp;journal=Sci.%20Adv.&amp;doi=10.1126%2Fsciadv.aax6849&amp;volume=6&amp;publication_year=2020&amp;author=Zhou%2CD\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR17\">Zhou, D. et al. High-pressure synthesis of magnetic neodymium polyhydrides. J. Am. Chem. Soc. 142, 2803\u20132811 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1021\/jacs.9b10439\" data-track-item_id=\"10.1021\/jacs.9b10439\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1021%2Fjacs.9b10439\" aria-label=\"Article reference 17\" data-doi=\"10.1021\/jacs.9b10439\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3cXhsFKju74%3D\" aria-label=\"CAS reference 17\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=31967807\" aria-label=\"PubMed reference 17\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 17\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=High-pressure%20synthesis%20of%20magnetic%20neodymium%20polyhydrides&amp;journal=J.%20Am.%20Chem.%20Soc.&amp;doi=10.1021%2Fjacs.9b10439&amp;volume=142&amp;pages=2803-2811&amp;publication_year=2020&amp;author=Zhou%2CD\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR18\">Kong, P. et al. Superconductivity up to 243 K in the yttrium-hydrogen system under high pressure. Nat. Commun. 12, 5075 (2021).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1038\/s41467-021-25372-2\" data-track-item_id=\"10.1038\/s41467-021-25372-2\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41467-021-25372-2\" aria-label=\"Article reference 18\" data-doi=\"10.1038\/s41467-021-25372-2\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3MXhvVGnsL7O\" aria-label=\"CAS reference 18\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=34417471\" aria-label=\"PubMed reference 18\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed central reference\" data-track-action=\"pubmed central reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/pmc\/articles\/PMC8379216\" aria-label=\"PubMed Central reference 18\" target=\"_blank\">PubMed Central<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 18\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Superconductivity%20up%20to%20243%20K%20in%20the%20yttrium-hydrogen%20system%20under%20high%20pressure&amp;journal=Nat.%20Commun.&amp;doi=10.1038%2Fs41467-021-25372-2&amp;volume=12&amp;publication_year=2021&amp;author=Kong%2CP\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR19\">Shao, M. et al. Superconducting ScH3 and LuH3 at megabar pressures. Inorg. Chem. 60, 15330\u201315335 (2021).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1021\/acs.inorgchem.1c01960\" data-track-item_id=\"10.1021\/acs.inorgchem.1c01960\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1021%2Facs.inorgchem.1c01960\" aria-label=\"Article reference 19\" data-doi=\"10.1021\/acs.inorgchem.1c01960\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3MXitFCru7nM\" aria-label=\"CAS reference 19\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=34590849\" aria-label=\"PubMed reference 19\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 19\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Superconducting%20ScH3%20and%20LuH3%20at%20megabar%20pressures&amp;journal=Inorg.%20Chem.&amp;doi=10.1021%2Facs.inorgchem.1c01960&amp;volume=60&amp;pages=15330-15335&amp;publication_year=2021&amp;author=Shao%2CM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR20\">Troyan, I. A. et al. Anomalous high-temperature superconductivity in YH6. Adv. Mater. 33, 2006832 (2021).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1002\/adma.202006832\" data-track-item_id=\"10.1002\/adma.202006832\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1002%2Fadma.202006832\" aria-label=\"Article reference 20\" data-doi=\"10.1002\/adma.202006832\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3MXmtFajt7w%3D\" aria-label=\"CAS reference 20\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 20\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Anomalous%20high-temperature%20superconductivity%20in%20YH6&amp;journal=Adv.%20Mater.&amp;doi=10.1002%2Fadma.202006832&amp;volume=33&amp;publication_year=2021&amp;author=Troyan%2CIA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR21\">Liu, H., Naumov, I. I., Hoffmann, R., Ashcroft, N. W. &amp; Hemley, R. J. Potential high-Tc superconducting lanthanum and yttrium hydrides at high pressure. Proc. Natl. Acad. Sci. 114, 6990\u20136995 (2017).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1073\/pnas.1704505114\" data-track-item_id=\"10.1073\/pnas.1704505114\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1073%2Fpnas.1704505114\" aria-label=\"Article reference 21\" data-doi=\"10.1073\/pnas.1704505114\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC2sXhtVWmtL3P\" aria-label=\"CAS reference 21\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=28630301\" aria-label=\"PubMed reference 21\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed central reference\" data-track-action=\"pubmed central reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/pmc\/articles\/PMC5502634\" aria-label=\"PubMed Central reference 21\" target=\"_blank\">PubMed Central<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 21\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Potential%20high-Tc%20superconducting%20lanthanum%20and%20yttrium%20hydrides%20at%20high%20pressure&amp;journal=Proc.%20Natl.%20Acad.%20Sci.&amp;doi=10.1073%2Fpnas.1704505114&amp;volume=114&amp;pages=6990-6995&amp;publication_year=2017&amp;author=Liu%2CH&amp;author=Naumov%2CII&amp;author=Hoffmann%2CR&amp;author=Ashcroft%2CNW&amp;author=Hemley%2CRJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR22\">Liu, L. et al. Microscopic mechanism of room-temperature superconductivity in compressed LaH10. Phys. Rev. B 99, 140501 (2019).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.99.140501\" data-track-item_id=\"10.1103\/PhysRevB.99.140501\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.99.140501\" aria-label=\"Article reference 22\" data-doi=\"10.1103\/PhysRevB.99.140501\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC1MXhtVahtbfI\" aria-label=\"CAS reference 22\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 22\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Microscopic%20mechanism%20of%20room-temperature%20superconductivity%20in%20compressed%20LaH10&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.99.140501&amp;volume=99&amp;publication_year=2019&amp;author=Liu%2CL\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR23\">Hohenberg, P. &amp; Kohn, W. Inhomogeneous Electron Gas. Phys. Rev. 136, B864\u2013B871 (1964).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRev.136.B864\" data-track-item_id=\"10.1103\/PhysRev.136.B864\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRev.136.B864\" aria-label=\"Article reference 23\" data-doi=\"10.1103\/PhysRev.136.B864\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 23\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Inhomogeneous%20Electron%20Gas&amp;journal=Phys.%20Rev.&amp;doi=10.1103%2FPhysRev.136.B864&amp;volume=136&amp;pages=B864-B871&amp;publication_year=1964&amp;author=Hohenberg%2CP&amp;author=Kohn%2CW\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR24\">Kohn, W. &amp; Sham, L. J. Self-consistent equations including exchange and correlation effects. Phys. Rev. 140, A1133\u2013A1138 (1965).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRev.140.A1133\" data-track-item_id=\"10.1103\/PhysRev.140.A1133\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRev.140.A1133\" aria-label=\"Article reference 24\" data-doi=\"10.1103\/PhysRev.140.A1133\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 24\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Self-consistent%20equations%20including%20exchange%20and%20correlation%20effects&amp;journal=Phys.%20Rev.&amp;doi=10.1103%2FPhysRev.140.A1133&amp;volume=140&amp;pages=A1133-A1138&amp;publication_year=1965&amp;author=Kohn%2CW&amp;author=Sham%2CLJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR25\">Anisimov, V. I. et al. Full orbital calculation scheme for materials with strongly correlated electrons. Phys. Rev. B 71, 125119 (2005).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.71.125119\" data-track-item_id=\"10.1103\/PhysRevB.71.125119\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.71.125119\" aria-label=\"Article reference 25\" data-doi=\"10.1103\/PhysRevB.71.125119\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 25\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Full%20orbital%20calculation%20scheme%20for%20materials%20with%20strongly%20correlated%20electrons&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.71.125119&amp;volume=71&amp;publication_year=2005&amp;author=Anisimov%2CVI\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR26\">Kotliar, G. et al. Electronic structure calculations with dynamical mean-field theory. Rev. Mod. Phys. 78, 865\u2013951 (2006).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/RevModPhys.78.865\" data-track-item_id=\"10.1103\/RevModPhys.78.865\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FRevModPhys.78.865\" aria-label=\"Article reference 26\" data-doi=\"10.1103\/RevModPhys.78.865\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BD28Xht12mtL7E\" aria-label=\"CAS reference 26\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 26\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Electronic%20structure%20calculations%20with%20dynamical%20mean-field%20theory&amp;journal=Rev.%20Mod.%20Phys.&amp;doi=10.1103%2FRevModPhys.78.865&amp;volume=78&amp;pages=865-951&amp;publication_year=2006&amp;author=Kotliar%2CG\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR27\">Lechermann, F. et al. Dynamical mean-field theory using Wannier functions: A flexible route to electronic structure calculations of strongly correlated materials. Phys. Rev. B 74, 125120 (2006).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.74.125120\" data-track-item_id=\"10.1103\/PhysRevB.74.125120\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.74.125120\" aria-label=\"Article reference 27\" data-doi=\"10.1103\/PhysRevB.74.125120\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 27\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Dynamical%20mean-field%20theory%20using%20Wannier%20functions%3A%20A%20flexible%20route%20to%20electronic%20structure%20calculations%20of%20strongly%20correlated%20materials&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.74.125120&amp;volume=74&amp;publication_year=2006&amp;author=Lechermann%2CF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR28\">Pourovskii, L. V., Amadon, B., Biermann, S. &amp; Georges, A. Self-consistency over the charge density in dynamical mean-field theory: A linear muffin-tin implementation and some physical implications. Phys. Rev. B 76, 235101 (2007).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.76.235101\" data-track-item_id=\"10.1103\/PhysRevB.76.235101\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.76.235101\" aria-label=\"Article reference 28\" data-doi=\"10.1103\/PhysRevB.76.235101\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 28\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Self-consistency%20over%20the%20charge%20density%20in%20dynamical%20mean-field%20theory%3A%20A%20linear%20muffin-tin%20implementation%20and%20some%20physical%20implications&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.76.235101&amp;volume=76&amp;publication_year=2007&amp;author=Pourovskii%2CLV&amp;author=Amadon%2CB&amp;author=Biermann%2CS&amp;author=Georges%2CA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR29\">Amadon, B. et al. Plane-wave based electronic structure calculations for correlated materials using dynamical mean-field theory and projected local orbitals. Phys. Rev. B 77, 205112 (2008).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.77.205112\" data-track-item_id=\"10.1103\/PhysRevB.77.205112\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.77.205112\" aria-label=\"Article reference 29\" data-doi=\"10.1103\/PhysRevB.77.205112\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 29\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Plane-wave%20based%20electronic%20structure%20calculations%20for%20correlated%20materials%20using%20dynamical%20mean-field%20theory%20and%20projected%20local%20orbitals&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.77.205112&amp;volume=77&amp;publication_year=2008&amp;author=Amadon%2CB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR30\">Korotin, D. et al. Construction and solution of a Wannier-functions based Hamiltonian in the pseudopotential plane-wave framework for strongly correlated materials. Eur. Phys. J. B 65, 91\u201398 (2008).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1140\/epjb\/e2008-00326-3\" data-track-item_id=\"10.1140\/epjb\/e2008-00326-3\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1140%2Fepjb%2Fe2008-00326-3\" aria-label=\"Article reference 30\" data-doi=\"10.1140\/epjb\/e2008-00326-3\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BD1cXht1eks77F\" aria-label=\"CAS reference 30\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 30\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Construction%20and%20solution%20of%20a%20Wannier-functions%20based%20Hamiltonian%20in%20the%20pseudopotential%20plane-wave%20framework%20for%20strongly%20correlated%20materials&amp;journal=Eur.%20Phys.%20J.%20B&amp;doi=10.1140%2Fepjb%2Fe2008-00326-3&amp;volume=65&amp;pages=91-98&amp;publication_year=2008&amp;author=Korotin%2CD\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR31\">Haule, K., Yee, C.-H. &amp; Kim, K. Dynamical mean-field theory within the full-potential methods: electronic structure of CeIrIn5, CeCoIn5, and CeRhIn5. Phys. Rev. B 81, 195107 (2010).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.81.195107\" data-track-item_id=\"10.1103\/PhysRevB.81.195107\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.81.195107\" aria-label=\"Article reference 31\" data-doi=\"10.1103\/PhysRevB.81.195107\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 31\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Dynamical%20mean-field%20theory%20within%20the%20full-potential%20methods%3A%20electronic%20structure%20of%20CeIrIn5%2C%20CeCoIn5%2C%20and%20CeRhIn5&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.81.195107&amp;volume=81&amp;publication_year=2010&amp;author=Haule%2CK&amp;author=Yee%2CC-H&amp;author=Kim%2CK\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR32\">Haule, K. &amp; Birol, T. Free energy from stationary implementation of the DFT + DMFT functional. Phys. Rev. Lett. 115, 256402 (2015).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevLett.115.256402\" data-track-item_id=\"10.1103\/PhysRevLett.115.256402\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevLett.115.256402\" aria-label=\"Article reference 32\" data-doi=\"10.1103\/PhysRevLett.115.256402\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=26722932\" aria-label=\"PubMed reference 32\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 32\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Free%20energy%20from%20stationary%20implementation%20of%20the%20DFT%20%2B%20DMFT%20functional&amp;journal=Phys.%20Rev.%20Lett.&amp;doi=10.1103%2FPhysRevLett.115.256402&amp;volume=115&amp;publication_year=2015&amp;author=Haule%2CK&amp;author=Birol%2CT\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR33\">Plekhanov, E. et al. Many-body renormalization of forces in f-electron materials. Phys. Rev. B 98, 075129 (2018).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.98.075129\" data-track-item_id=\"10.1103\/PhysRevB.98.075129\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.98.075129\" aria-label=\"Article reference 33\" data-doi=\"10.1103\/PhysRevB.98.075129\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC1MXlsVamt7o%3D\" aria-label=\"CAS reference 33\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 33\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Many-body%20renormalization%20of%20forces%20in%20f-electron%20materials&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.98.075129&amp;volume=98&amp;publication_year=2018&amp;author=Plekhanov%2CE\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR34\">Koskenmaki, D. C. &amp; Gschneidner Jr, K. A. Cerium. Handb. Phys. Chem. Rare Earths 1, 337\u2013377 (1978).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1016\/S0168-1273(78)01008-9\" data-track-item_id=\"10.1016\/S0168-1273(78)01008-9\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2FS0168-1273%2878%2901008-9\" aria-label=\"Article reference 34\" data-doi=\"10.1016\/S0168-1273(78)01008-9\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DyaE1MXitVygs74%3D\" aria-label=\"CAS reference 34\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 34\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Cerium&amp;journal=Handb.%20Phys.%20Chem.%20Rare%20Earths&amp;doi=10.1016%2FS0168-1273%2878%2901008-9&amp;volume=1&amp;pages=337-377&amp;publication_year=1978&amp;author=Koskenmaki%2CDC&amp;author=Gschneidner%20Jr%2CKA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR35\">Held, K., McMahan, A. K. &amp; Scalettar, R. T. Cerium volume collapse: results from the merger of dynamical mean-field theory and local density approximation. Phys. Rev. Lett. 87, 276404 (2001).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevLett.87.276404\" data-track-item_id=\"10.1103\/PhysRevLett.87.276404\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevLett.87.276404\" aria-label=\"Article reference 35\" data-doi=\"10.1103\/PhysRevLett.87.276404\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:STN:280:DC%2BD38%2FnsFSkug%3D%3D\" aria-label=\"CAS reference 35\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=11800902\" aria-label=\"PubMed reference 35\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 35\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Cerium%20volume%20collapse%3A%20results%20from%20the%20merger%20of%20dynamical%20mean-field%20theory%20and%20local%20density%20approximation&amp;journal=Phys.%20Rev.%20Lett.&amp;doi=10.1103%2FPhysRevLett.87.276404&amp;volume=87&amp;publication_year=2001&amp;author=Held%2CK&amp;author=McMahan%2CAK&amp;author=Scalettar%2CRT\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR36\">Amadon, B., Biermann, S., Georges, A. &amp; Aryasetiawan, F. The \u03b1 \u2212 \u03b3 transition of cerium is entropy driven. Phys. Rev. Lett. 96, 066402 (2006).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevLett.96.066402\" data-track-item_id=\"10.1103\/PhysRevLett.96.066402\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevLett.96.066402\" aria-label=\"Article reference 36\" data-doi=\"10.1103\/PhysRevLett.96.066402\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:STN:280:DC%2BD283gtVOlsw%3D%3D\" aria-label=\"CAS reference 36\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=16606020\" aria-label=\"PubMed reference 36\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 36\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=The%20%CE%B1%20%E2%88%92%20%CE%B3%20transition%20of%20cerium%20is%20entropy%20driven&amp;journal=Phys.%20Rev.%20Lett.&amp;doi=10.1103%2FPhysRevLett.96.066402&amp;volume=96&amp;publication_year=2006&amp;author=Amadon%2CB&amp;author=Biermann%2CS&amp;author=Georges%2CA&amp;author=Aryasetiawan%2CF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR37\">Haule, K. Quantum Monte Carlo impurity solver for cluster dynamical mean-field theory and electronic structure calculations with adjustable cluster base. Phys. Rev. B 75, 155113 (2007).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.75.155113\" data-track-item_id=\"10.1103\/PhysRevB.75.155113\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.75.155113\" aria-label=\"Article reference 37\" data-doi=\"10.1103\/PhysRevB.75.155113\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 37\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Quantum%20Monte%20Carlo%20impurity%20solver%20for%20cluster%20dynamical%20mean-field%20theory%20and%20electronic%20structure%20calculations%20with%20adjustable%20cluster%20base&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.75.155113&amp;volume=75&amp;publication_year=2007&amp;author=Haule%2CK\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR38\">Huang, L. &amp; Lu, H. Electronic structure of cerium: a comprehensive first-principles study. Phys. Rev. B 99, 045122 (2019).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.99.045122\" data-track-item_id=\"10.1103\/PhysRevB.99.045122\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.99.045122\" aria-label=\"Article reference 38\" data-doi=\"10.1103\/PhysRevB.99.045122\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC1MXnvFWnsLc%3D\" aria-label=\"CAS reference 38\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 38\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Electronic%20structure%20of%20cerium%3A%20a%20comprehensive%20first-principles%20study&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.99.045122&amp;volume=99&amp;publication_year=2019&amp;author=Huang%2CL&amp;author=Lu%2CH\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR39\">Allen, J. et al. Electronic structure of cerium and light rare-earth intermetallics. Adv. Phys. 35, 275\u2013316 (1986).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1080\/00018738600101901\" data-track-item_id=\"10.1080\/00018738600101901\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1080%2F00018738600101901\" aria-label=\"Article reference 39\" data-doi=\"10.1080\/00018738600101901\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DyaL2sXktVyhsg%3D%3D\" aria-label=\"CAS reference 39\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 39\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Electronic%20structure%20of%20cerium%20and%20light%20rare-earth%20intermetallics&amp;journal=Adv.%20Phys.&amp;doi=10.1080%2F00018738600101901&amp;volume=35&amp;pages=275-316&amp;publication_year=1986&amp;author=Allen%2CJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR40\">Matar, S. F. Review on cerium intermetallic compounds: a bird\u2019s eye outlook through DFT. Prog. Solid State Chem. 41, 55\u201385 (2013).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1016\/j.progsolidstchem.2013.03.001\" data-track-item_id=\"10.1016\/j.progsolidstchem.2013.03.001\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2Fj.progsolidstchem.2013.03.001\" aria-label=\"Article reference 40\" data-doi=\"10.1016\/j.progsolidstchem.2013.03.001\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC3sXntlSmu7w%3D\" aria-label=\"CAS reference 40\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 40\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Review%20on%20cerium%20intermetallic%20compounds%3A%20a%20bird%E2%80%99s%20eye%20outlook%20through%20DFT&amp;journal=Prog.%20Solid%20State%20Chem.&amp;doi=10.1016%2Fj.progsolidstchem.2013.03.001&amp;volume=41&amp;pages=55-85&amp;publication_year=2013&amp;author=Matar%2CSF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR41\">McMahan, A. K., Huscroft, C., Scalettar, R. T. &amp; Pollock, E. L. Volume-collapse transitions in the rare earth metals. J. Comput.-Aided Mater. Des. 5, 131\u2013162 (1998).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1023\/A:1008698422183\" data-track-item_id=\"10.1023\/A:1008698422183\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1023%2FA%3A1008698422183\" aria-label=\"Article reference 41\" data-doi=\"10.1023\/A:1008698422183\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DyaK1MXisFejur8%3D\" aria-label=\"CAS reference 41\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 41\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Volume-collapse%20transitions%20in%20the%20rare%20earth%20metals&amp;journal=J.%20Comput.-Aided%20Mater.%20Des.&amp;doi=10.1023%2FA%3A1008698422183&amp;volume=5&amp;pages=131-162&amp;publication_year=1998&amp;author=McMahan%2CAK&amp;author=Huscroft%2CC&amp;author=Scalettar%2CRT&amp;author=Pollock%2CEL\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR42\">S\u00f6derlind, P., Turchi, P. E. A., Landa, A. &amp; Lordi, V. Ground-state properties of rare-earth metals: an evaluation of density-functional theory. J. Phys.: Cond. Matter 26, 416001 (2014).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 42\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Ground-state%20properties%20of%20rare-earth%20metals%3A%20an%20evaluation%20of%20density-functional%20theory&amp;journal=J.%20Phys.%3A%20Cond.%20Matter&amp;volume=26&amp;publication_year=2014&amp;author=S%C3%B6derlind%2CP&amp;author=Turchi%2CPEA&amp;author=Landa%2CA&amp;author=Lordi%2CV\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR43\">Riseborough, P. S. Heavy fermion semiconductors. Adv. Phys. 49, 257\u2013320 (2000).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1080\/000187300243345\" data-track-item_id=\"10.1080\/000187300243345\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1080%2F000187300243345\" aria-label=\"Article reference 43\" data-doi=\"10.1080\/000187300243345\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BD3cXks1Srs7Y%3D\" aria-label=\"CAS reference 43\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 43\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Heavy%20fermion%20semiconductors&amp;journal=Adv.%20Phys.&amp;doi=10.1080%2F000187300243345&amp;volume=49&amp;pages=257-320&amp;publication_year=2000&amp;author=Riseborough%2CPS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR44\">Tomczak, J. M. Thermoelectricity in correlated narrow-gap semiconductors. J. Phys.:Condens. Matter 30, 183001 (2018).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=29633717\" aria-label=\"PubMed reference 44\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 44\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Thermoelectricity%20in%20correlated%20narrow-gap%20semiconductors&amp;journal=J.%20Phys.%3ACondens.%20Matter&amp;volume=30&amp;publication_year=2018&amp;author=Tomczak%2CJM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR45\">Br\u00fcning, E. M. et al. Cefepo: A heavy fermion metal with ferromagnetic correlations. Phys. Rev. Lett. 101, 117206 (2008).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevLett.101.117206\" data-track-item_id=\"10.1103\/PhysRevLett.101.117206\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevLett.101.117206\" aria-label=\"Article reference 45\" data-doi=\"10.1103\/PhysRevLett.101.117206\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=18851327\" aria-label=\"PubMed reference 45\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 45\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Cefepo%3A%20A%20heavy%20fermion%20metal%20with%20ferromagnetic%20correlations&amp;journal=Phys.%20Rev.%20Lett.&amp;doi=10.1103%2FPhysRevLett.101.117206&amp;volume=101&amp;publication_year=2008&amp;author=Br%C3%BCning%2CEM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR46\">Ohishi, K. et al. Development of the heavy-fermion state in Ce2IrIn8 and the effects of ce dilution in (Ce1\u2212xLax)2IrIn8. Phys. Rev. B 80, 125104 (2009).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.80.125104\" data-track-item_id=\"10.1103\/PhysRevB.80.125104\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.80.125104\" aria-label=\"Article reference 46\" data-doi=\"10.1103\/PhysRevB.80.125104\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 46\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Development%20of%20the%20heavy-fermion%20state%20in%20Ce2IrIn8%20and%20the%20effects%20of%20ce%20dilution%20in%20%28Ce1%E2%88%92xLax%292IrIn8&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.80.125104&amp;volume=80&amp;publication_year=2009&amp;author=Ohishi%2CK\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR47\">Wang, C. et al. Effect of hole doping on superconductivity in compressed CeH9 at high pressures. Phys. Rev. B 104, L020504 (2021).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.104.L020504\" data-track-item_id=\"10.1103\/PhysRevB.104.L020504\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.104.L020504\" aria-label=\"Article reference 47\" data-doi=\"10.1103\/PhysRevB.104.L020504\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3MXhvVamtLjM\" aria-label=\"CAS reference 47\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 47\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Effect%20of%20hole%20doping%20on%20superconductivity%20in%20compressed%20CeH9%20at%20high%20pressures&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.104.L020504&amp;volume=104&amp;publication_year=2021&amp;author=Wang%2CC\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR48\">Jeon, H., Wang, C., Yi, S. &amp; Cho, J.-H. Origin of enhanced chemical precompression in cerium hydride CeH9. Sci. Rep. 10, 16878 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1038\/s41598-020-73665-1\" data-track-item_id=\"10.1038\/s41598-020-73665-1\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41598-020-73665-1\" aria-label=\"Article reference 48\" data-doi=\"10.1038\/s41598-020-73665-1\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3cXitVKgsrfL\" aria-label=\"CAS reference 48\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=33037271\" aria-label=\"PubMed reference 48\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed central reference\" data-track-action=\"pubmed central reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/pmc\/articles\/PMC7547066\" aria-label=\"PubMed Central reference 48\" target=\"_blank\">PubMed Central<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 48\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Origin%20of%20enhanced%20chemical%20precompression%20in%20cerium%20hydride%20CeH9&amp;journal=Sci.%20Rep.&amp;doi=10.1038%2Fs41598-020-73665-1&amp;volume=10&amp;publication_year=2020&amp;author=Jeon%2CH&amp;author=Wang%2CC&amp;author=Yi%2CS&amp;author=Cho%2CJ-H\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR49\">Parlinski, K., Li, Z. Q. &amp; Kawazoe, Y. First-principles determination of the soft mode in cubic ZrO2. Phys. Rev. Lett. 78, 4063\u20134066 (1997).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevLett.78.4063\" data-track-item_id=\"10.1103\/PhysRevLett.78.4063\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevLett.78.4063\" aria-label=\"Article reference 49\" data-doi=\"10.1103\/PhysRevLett.78.4063\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DyaK2sXjsVentb8%3D\" aria-label=\"CAS reference 49\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 49\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=First-principles%20determination%20of%20the%20soft%20mode%20in%20cubic%20ZrO2&amp;journal=Phys.%20Rev.%20Lett.&amp;doi=10.1103%2FPhysRevLett.78.4063&amp;volume=78&amp;pages=4063-4066&amp;publication_year=1997&amp;author=Parlinski%2CK&amp;author=Li%2CZQ&amp;author=Kawazoe%2CY\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR50\">Monserrat, B. Electron\u2013phonon coupling from finite differences. J. Condens. Matter Phys. 30, 083001 (2018).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1088\/1361-648X\/aaa737\" data-track-item_id=\"10.1088\/1361-648X\/aaa737\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1088%2F1361-648X%2Faaa737\" aria-label=\"Article reference 50\" data-doi=\"10.1088\/1361-648X\/aaa737\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 50\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Electron%E2%80%93phonon%20coupling%20from%20finite%20differences&amp;journal=J.%20Condens.%20Matter%20Phys.&amp;doi=10.1088%2F1361-648X%2Faaa737&amp;volume=30&amp;publication_year=2018&amp;author=Monserrat%2CB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR51\">Ko\u00e7er, C. P., Haule, K., Pascut, G. L. &amp; Monserrat, B. Efficient lattice dynamics calculations for correlated materials with DFT + DMFT. Phys. Rev. B 102, 245104 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.102.245104\" data-track-item_id=\"10.1103\/PhysRevB.102.245104\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.102.245104\" aria-label=\"Article reference 51\" data-doi=\"10.1103\/PhysRevB.102.245104\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 51\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Efficient%20lattice%20dynamics%20calculations%20for%20correlated%20materials%20with%20DFT%20%2B%20DMFT&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.102.245104&amp;volume=102&amp;publication_year=2020&amp;author=Ko%C3%A7er%2CCP&amp;author=Haule%2CK&amp;author=Pascut%2CGL&amp;author=Monserrat%2CB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR52\">Errea, I. et al. Quantum crystal structure in the 250-kelvin superconducting lanthanum hydride. Nature 578, 66\u201369 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1038\/s41586-020-1955-z\" data-track-item_id=\"10.1038\/s41586-020-1955-z\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41586-020-1955-z\" aria-label=\"Article reference 52\" data-doi=\"10.1038\/s41586-020-1955-z\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3cXktlCls7c%3D\" aria-label=\"CAS reference 52\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=32025016\" aria-label=\"PubMed reference 52\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 52\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Quantum%20crystal%20structure%20in%20the%20250-kelvin%20superconducting%20lanthanum%20hydride&amp;journal=Nature&amp;doi=10.1038%2Fs41586-020-1955-z&amp;volume=578&amp;pages=66-69&amp;publication_year=2020&amp;author=Errea%2CI\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR53\">Khanal, G. &amp; Haule, K. Correlation driven phonon anomalies in bulk FeSe. Phys. Rev. B 102, 241108 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.102.241108\" data-track-item_id=\"10.1103\/PhysRevB.102.241108\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.102.241108\" aria-label=\"Article reference 53\" data-doi=\"10.1103\/PhysRevB.102.241108\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3MXivVOlurk%3D\" aria-label=\"CAS reference 53\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 53\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Correlation%20driven%20phonon%20anomalies%20in%20bulk%20FeSe&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.102.241108&amp;volume=102&amp;publication_year=2020&amp;author=Khanal%2CG&amp;author=Haule%2CK\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR54\">McMillan, W. L. Transition temperature of strong-coupled superconductors. Phys. Rev. 167, 331\u2013344 (1968).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRev.167.331\" data-track-item_id=\"10.1103\/PhysRev.167.331\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRev.167.331\" aria-label=\"Article reference 54\" data-doi=\"10.1103\/PhysRev.167.331\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DyaF1cXot1altQ%3D%3D\" aria-label=\"CAS reference 54\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 54\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Transition%20temperature%20of%20strong-coupled%20superconductors&amp;journal=Phys.%20Rev.&amp;doi=10.1103%2FPhysRev.167.331&amp;volume=167&amp;pages=331-344&amp;publication_year=1968&amp;author=McMillan%2CWL\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR55\">Allen, P. B. &amp; Dynes, R. C. Transition temperature of strong-coupled superconductors reanalyzed. Phys. Rev. B 12, 905\u2013922 (1975).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.12.905\" data-track-item_id=\"10.1103\/PhysRevB.12.905\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.12.905\" aria-label=\"Article reference 55\" data-doi=\"10.1103\/PhysRevB.12.905\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DyaE2MXlsFKmtbs%3D\" aria-label=\"CAS reference 55\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 55\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Transition%20temperature%20of%20strong-coupled%20superconductors%20reanalyzed&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.12.905&amp;volume=12&amp;pages=905-922&amp;publication_year=1975&amp;author=Allen%2CPB&amp;author=Dynes%2CRC\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR56\">Morel, P. &amp; Anderson, P. W. Calculation of the superconducting state parameters with retarded electron-phonon interaction. Phys. Rev. 125, 1263\u20131271 (1962).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRev.125.1263\" data-track-item_id=\"10.1103\/PhysRev.125.1263\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRev.125.1263\" aria-label=\"Article reference 56\" data-doi=\"10.1103\/PhysRev.125.1263\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 56\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Calculation%20of%20the%20superconducting%20state%20parameters%20with%20retarded%20electron-phonon%20interaction&amp;journal=Phys.%20Rev.&amp;doi=10.1103%2FPhysRev.125.1263&amp;volume=125&amp;pages=1263-1271&amp;publication_year=1962&amp;author=Morel%2CP&amp;author=Anderson%2CPW\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR57\">Allen, P. B. &amp; Mitrovi\u0107, B. Theory of superconducting Tc. Solid State Phys. 37, 1\u201392 (1983).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1016\/S0081-1947(08)60665-7\" data-track-item_id=\"10.1016\/S0081-1947(08)60665-7\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2FS0081-1947%2808%2960665-7\" aria-label=\"Article reference 57\" data-doi=\"10.1016\/S0081-1947(08)60665-7\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 57\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Theory%20of%20superconducting%20Tc&amp;journal=Solid%20State%20Phys.&amp;doi=10.1016%2FS0081-1947%2808%2960665-7&amp;volume=37&amp;pages=1-92&amp;publication_year=1983&amp;author=Allen%2CPB&amp;author=Mitrovi%C4%87%2CB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR58\">Margine, E. R. &amp; Giustino, F. Anisotropic Migdal-Eliashberg theory using Wannier functions. Phys. Rev. B 87, 024505 (2013).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.87.024505\" data-track-item_id=\"10.1103\/PhysRevB.87.024505\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.87.024505\" aria-label=\"Article reference 58\" data-doi=\"10.1103\/PhysRevB.87.024505\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 58\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Anisotropic%20Migdal-Eliashberg%20theory%20using%20Wannier%20functions&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.87.024505&amp;volume=87&amp;publication_year=2013&amp;author=Margine%2CER&amp;author=Giustino%2CF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR59\">Plekhanov, E. et al. Computational materials discovery for lanthanide hydrides at high pressure for high temperature superconductivity. Phys. Rev. Res. 4, 013248 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevResearch.4.013248\" data-track-item_id=\"10.1103\/PhysRevResearch.4.013248\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevResearch.4.013248\" aria-label=\"Article reference 59\" data-doi=\"10.1103\/PhysRevResearch.4.013248\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB38XpsFOhs70%3D\" aria-label=\"CAS reference 59\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 59\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Computational%20materials%20discovery%20for%20lanthanide%20hydrides%20at%20high%20pressure%20for%20high%20temperature%20superconductivity&amp;journal=Phys.%20Rev.%20Res.&amp;doi=10.1103%2FPhysRevResearch.4.013248&amp;volume=4&amp;publication_year=2022&amp;author=Plekhanov%2CE\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR60\">Hubbard, J. &amp; Flowers, B. H. Electron correlations in narrow energy bands. Proc. R. Soc. Lond. Ser. A 276, 238\u2013257 (1963).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1098\/rspa.1963.0204\" data-track-item_id=\"10.1098\/rspa.1963.0204\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1098%2Frspa.1963.0204\" aria-label=\"Article reference 60\" data-doi=\"10.1098\/rspa.1963.0204\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 60\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Electron%20correlations%20in%20narrow%20energy%20bands&amp;journal=Proc.%20R.%20Soc.%20Lond.%20Ser.%20A&amp;doi=10.1098%2Frspa.1963.0204&amp;volume=276&amp;pages=238-257&amp;publication_year=1963&amp;author=Hubbard%2CJ&amp;author=Flowers%2CBH\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR61\">Gull, E. et al. Continuous-time monte carlo methods for quantum impurity models. Rev. Mod. Phys. 83, 349\u2013404 (2011).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/RevModPhys.83.349\" data-track-item_id=\"10.1103\/RevModPhys.83.349\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FRevModPhys.83.349\" aria-label=\"Article reference 61\" data-doi=\"10.1103\/RevModPhys.83.349\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC3MXos1eitrg%3D\" aria-label=\"CAS reference 61\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 61\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Continuous-time%20monte%20carlo%20methods%20for%20quantum%20impurity%20models&amp;journal=Rev.%20Mod.%20Phys.&amp;doi=10.1103%2FRevModPhys.83.349&amp;volume=83&amp;pages=349-404&amp;publication_year=2011&amp;author=Gull%2CE\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR62\">Tomczak, J. M. &amp; Biermann, S. Effective band structure of correlated materials: the case of VO2. J. Phys. Condens. Matter 19, 365206 (2007).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1088\/0953-8984\/19\/36\/365206\" data-track-item_id=\"10.1088\/0953-8984\/19\/36\/365206\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1088%2F0953-8984%2F19%2F36%2F365206\" aria-label=\"Article reference 62\" data-doi=\"10.1088\/0953-8984\/19\/36\/365206\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=21694152\" aria-label=\"PubMed reference 62\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 62\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Effective%20band%20structure%20of%20correlated%20materials%3A%20the%20case%20of%20VO2&amp;journal=J.%20Phys.%20Condens.%20Matter&amp;doi=10.1088%2F0953-8984%2F19%2F36%2F365206&amp;volume=19&amp;publication_year=2007&amp;author=Tomczak%2CJM&amp;author=Biermann%2CS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR63\">Bardeen, J., Cooper, L. N. &amp; Schrieffer, J. R. Theory of superconductivity. Phys. Rev. 108, 1175\u20131204 (1957).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRev.108.1175\" data-track-item_id=\"10.1103\/PhysRev.108.1175\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRev.108.1175\" aria-label=\"Article reference 63\" data-doi=\"10.1103\/PhysRev.108.1175\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DyaG1cXjtlGltg%3D%3D\" aria-label=\"CAS reference 63\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 63\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Theory%20of%20superconductivity&amp;journal=Phys.%20Rev.&amp;doi=10.1103%2FPhysRev.108.1175&amp;volume=108&amp;pages=1175-1204&amp;publication_year=1957&amp;author=Bardeen%2CJ&amp;author=Cooper%2CLN&amp;author=Schrieffer%2CJR\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR64\">Yuan, Z. et al. Correlation-enhanced electron-phonon coupling and superconductivity in (Ba, K)SbO3 superconductors. Phys. Rev. B 105, 014517 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.105.014517\" data-track-item_id=\"10.1103\/PhysRevB.105.014517\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.105.014517\" aria-label=\"Article reference 64\" data-doi=\"10.1103\/PhysRevB.105.014517\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB38XjtlWhsLY%3D\" aria-label=\"CAS reference 64\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 64\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Correlation-enhanced%20electron-phonon%20coupling%20and%20superconductivity%20in%20%28Ba%2C%20K%29SbO3%20superconductors&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.105.014517&amp;volume=105&amp;publication_year=2022&amp;author=Yuan%2CZ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR65\">Yin, Z. P., Kutepov, A. &amp; Kotliar, G. Correlation-enhanced electron-phonon coupling: applications of GW and screened hybrid functional to bismuthates, chloronitrides, and other high-Tc superconductors. Phys. Rev. X 3, 021011 (2013).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC3sXhtVantLnE\" aria-label=\"CAS reference 65\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 65\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Correlation-enhanced%20electron-phonon%20coupling%3A%20applications%20of%20GW%20and%20screened%20hybrid%20functional%20to%20bismuthates%2C%20chloronitrides%2C%20and%20other%20high-Tc%20superconductors&amp;journal=Phys.%20Rev.%20X&amp;volume=3&amp;publication_year=2013&amp;author=Yin%2CZP&amp;author=Kutepov%2CA&amp;author=Kotliar%2CG\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR66\">Mandal, S., Cohen, R. E. &amp; Haule, K. Strong pressure-dependent electron-phonon coupling in FeSe. Phys. Rev. B 89, 220502 (2014).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.89.220502\" data-track-item_id=\"10.1103\/PhysRevB.89.220502\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.89.220502\" aria-label=\"Article reference 66\" data-doi=\"10.1103\/PhysRevB.89.220502\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 66\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Strong%20pressure-dependent%20electron-phonon%20coupling%20in%20FeSe&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.89.220502&amp;volume=89&amp;publication_year=2014&amp;author=Mandal%2CS&amp;author=Cohen%2CRE&amp;author=Haule%2CK\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR67\">Zou, Q. et al. Correlation enhanced electron-phonon coupling in FeSe\/SrTiO3 at a magic angle. arXiv preprint arXiv:<a href=\"http:\/\/arxiv.org\/abs\/2506.22435\" data-track=\"click_references\" data-track-action=\"external reference\" data-track-value=\"external reference\" data-track-label=\"http:\/\/arxiv.org\/abs\/2506.22435\" rel=\"nofollow noopener\" target=\"_blank\">https:\/\/arxiv.org\/abs\/2506.22435<\/a> (2025).<\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR68\">Poliukhin, A., Colonna, N., Libbi, F., Ponc\u00e9, S. &amp; Marzari, N. Carrier mobilities and electron-phonon interactions beyond DFT. arXiv preprint arXiv:<a href=\"http:\/\/arxiv.org\/abs\/2508.14852\" data-track=\"click_references\" data-track-action=\"external reference\" data-track-value=\"external reference\" data-track-label=\"http:\/\/arxiv.org\/abs\/2508.14852\" rel=\"nofollow noopener\" target=\"_blank\">https:\/\/arxiv.org\/abs\/2508.14852<\/a> (2025).<\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR69\">Yam, Y.-C., Sawatzky, G. A. &amp; Berciu, M. Dressing due to correlations strongly reduces the effect of electron-phonon coupling. Phys. Rev. B 106, 075152 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.106.075152\" data-track-item_id=\"10.1103\/PhysRevB.106.075152\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.106.075152\" aria-label=\"Article reference 69\" data-doi=\"10.1103\/PhysRevB.106.075152\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB38XisVGqsLvN\" aria-label=\"CAS reference 69\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 69\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Dressing%20due%20to%20correlations%20strongly%20reduces%20the%20effect%20of%20electron-phonon%20coupling&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.106.075152&amp;volume=106&amp;publication_year=2022&amp;author=Yam%2CY-C&amp;author=Sawatzky%2CGA&amp;author=Berciu%2CM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR70\">Coulter, J. &amp; Millis, A. J. Electron-phonon coupling in correlated materials: insights from the hubbard-holstein model. arXiv preprint arXiv:<a href=\"http:\/\/arxiv.org\/abs\/2505.08081\" data-track=\"click_references\" data-track-action=\"external reference\" data-track-value=\"external reference\" data-track-label=\"http:\/\/arxiv.org\/abs\/2505.08081\" rel=\"nofollow noopener\" target=\"_blank\">https:\/\/arxiv.org\/abs\/2505.08081<\/a> (2025).<\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR71\">Zheng, F. et al. Prediction of ambient pressure superconductivity in cubic ternary hydrides with MH6 octahedra. Mater. Today Phys. 42, 101374 (2024).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1016\/j.mtphys.2024.101374\" data-track-item_id=\"10.1016\/j.mtphys.2024.101374\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2Fj.mtphys.2024.101374\" aria-label=\"Article reference 71\" data-doi=\"10.1016\/j.mtphys.2024.101374\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB2cXlsVKns7c%3D\" aria-label=\"CAS reference 71\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 71\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Prediction%20of%20ambient%20pressure%20superconductivity%20in%20cubic%20ternary%20hydrides%20with%20MH6%20octahedra&amp;journal=Mater.%20Today%20Phys.&amp;doi=10.1016%2Fj.mtphys.2024.101374&amp;volume=42&amp;publication_year=2024&amp;author=Zheng%2CF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR72\">Kawamura, M., Hizume, Y. &amp; Ozaki, T. Benchmark of density functional theory for superconductors in elemental materials. Phys. Rev. B 101, 134511 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.101.134511\" data-track-item_id=\"10.1103\/PhysRevB.101.134511\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.101.134511\" aria-label=\"Article reference 72\" data-doi=\"10.1103\/PhysRevB.101.134511\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3cXhtVCjs73O\" aria-label=\"CAS reference 72\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 72\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Benchmark%20of%20density%20functional%20theory%20for%20superconductors%20in%20elemental%20materials&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.101.134511&amp;volume=101&amp;publication_year=2020&amp;author=Kawamura%2CM&amp;author=Hizume%2CY&amp;author=Ozaki%2CT\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR73\">Worm, P. et al. Spin fluctuations sufficient to mediate superconductivity in nickelates. Phys. Rev. B 109, 235126 (2024).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.109.235126\" data-track-item_id=\"10.1103\/PhysRevB.109.235126\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.109.235126\" aria-label=\"Article reference 73\" data-doi=\"10.1103\/PhysRevB.109.235126\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB2cXitlSrsrfK\" aria-label=\"CAS reference 73\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 73\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Spin%20fluctuations%20sufficient%20to%20mediate%20superconductivity%20in%20nickelates&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.109.235126&amp;volume=109&amp;publication_year=2024&amp;author=Worm%2CP\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR74\">Blaha, P. et al. WIEN2k: An APW+lo program for calculating the properties of solids. J. Chem. Phys. 152, 074101 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1063\/1.5143061\" data-track-item_id=\"10.1063\/1.5143061\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1063%2F1.5143061\" aria-label=\"Article reference 74\" data-doi=\"10.1063\/1.5143061\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3cXjs1Kksbs%3D\" aria-label=\"CAS reference 74\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=32087668\" aria-label=\"PubMed reference 74\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 74\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=WIEN2k%3A%20An%20APW%2Blo%20program%20for%20calculating%20the%20properties%20of%20solids&amp;journal=J.%20Chem.%20Phys.&amp;doi=10.1063%2F1.5143061&amp;volume=152&amp;publication_year=2020&amp;author=Blaha%2CP\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR75\">Kaufmann, J. &amp; Held, K. Ana_cont: Python package for analytic continuation. Comput. Phys. Commun. 282, 108519 (2023).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1016\/j.cpc.2022.108519\" data-track-item_id=\"10.1016\/j.cpc.2022.108519\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2Fj.cpc.2022.108519\" aria-label=\"Article reference 75\" data-doi=\"10.1016\/j.cpc.2022.108519\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB38Xitlers7fF\" aria-label=\"CAS reference 75\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 75\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Ana_cont%3A%20Python%20package%20for%20analytic%20continuation&amp;journal=Comput.%20Phys.%20Commun.&amp;doi=10.1016%2Fj.cpc.2022.108519&amp;volume=282&amp;publication_year=2023&amp;author=Kaufmann%2CJ&amp;author=Held%2CK\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR76\">Segall, M. D. et al. First-principles simulation: Ideas, illustrations and the CASTEP code. J. Phys. Condens. 14, 2717\u20132744 (2002).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1088\/0953-8984\/14\/11\/301\" data-track-item_id=\"10.1088\/0953-8984\/14\/11\/301\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1088%2F0953-8984%2F14%2F11%2F301\" aria-label=\"Article reference 76\" data-doi=\"10.1088\/0953-8984\/14\/11\/301\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BD38XivFGrs7c%3D\" aria-label=\"CAS reference 76\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 76\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=First-principles%20simulation%3A%20Ideas%2C%20illustrations%20and%20the%20CASTEP%20code&amp;journal=J.%20Phys.%20Condens.&amp;doi=10.1088%2F0953-8984%2F14%2F11%2F301&amp;volume=14&amp;pages=2717-2744&amp;publication_year=2002&amp;author=Segall%2CMD\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR77\">Clark, S. J. et al. First principles methods using CASTEP. Z. Kristallogr. Cryst. Mater. 220, 567\u2013570 (2005).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1524\/zkri.220.5.567.65075\" data-track-item_id=\"10.1524\/zkri.220.5.567.65075\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1524%2Fzkri.220.5.567.65075\" aria-label=\"Article reference 77\" data-doi=\"10.1524\/zkri.220.5.567.65075\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BD2MXmsVSitbk%3D\" aria-label=\"CAS reference 77\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 77\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=First%20principles%20methods%20using%20CASTEP&amp;journal=Z.%20Kristallogr.%20Cryst.%20Mater.&amp;doi=10.1524%2Fzkri.220.5.567.65075&amp;volume=220&amp;pages=567-570&amp;publication_year=2005&amp;author=Clark%2CSJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR78\">Giannozzi, P. et al. QUANTUM ESPRESSO: A modular and open-source software project for quantum simulations of materials. J. Phys. Condens. 21, 395502 (2009).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1088\/0953-8984\/21\/39\/395502\" data-track-item_id=\"10.1088\/0953-8984\/21\/39\/395502\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1088%2F0953-8984%2F21%2F39%2F395502\" aria-label=\"Article reference 78\" data-doi=\"10.1088\/0953-8984\/21\/39\/395502\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 78\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=QUANTUM%20ESPRESSO%3A%20A%20modular%20and%20open-source%20software%20project%20for%20quantum%20simulations%20of%20materials&amp;journal=J.%20Phys.%20Condens.&amp;doi=10.1088%2F0953-8984%2F21%2F39%2F395502&amp;volume=21&amp;publication_year=2009&amp;author=Giannozzi%2CP\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR79\">Giannozzi, P. et al. Advanced capabilities for materials modelling with quantum ESPRESSO. J. Phys.:Condens. Matter 29, 465901 (2017).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:STN:280:DC%2BC1M7jvFOjuw%3D%3D\" aria-label=\"CAS reference 79\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=29064822\" aria-label=\"PubMed reference 79\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 79\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Advanced%20capabilities%20for%20materials%20modelling%20with%20quantum%20ESPRESSO&amp;journal=J.%20Phys.%3ACondens.%20Matter&amp;volume=29&amp;publication_year=2017&amp;author=Giannozzi%2CP\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR80\">Perdew, J. P., Burke, K. &amp; Ernzerhof, M. Generalized gradient approximation made simple. Phys. Rev. Lett. 77, 3865\u20133868 (1996).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevLett.77.3865\" data-track-item_id=\"10.1103\/PhysRevLett.77.3865\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevLett.77.3865\" aria-label=\"Article reference 80\" data-doi=\"10.1103\/PhysRevLett.77.3865\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DyaK28XmsVCgsbs%3D\" aria-label=\"CAS reference 80\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"pubmed reference\" data-track-action=\"pubmed reference\" href=\"http:\/\/www.ncbi.nlm.nih.gov\/entrez\/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;dopt=Abstract&amp;list_uids=10062328\" aria-label=\"PubMed reference 80\" target=\"_blank\">PubMed<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 80\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Generalized%20gradient%20approximation%20made%20simple&amp;journal=Phys.%20Rev.%20Lett.&amp;doi=10.1103%2FPhysRevLett.77.3865&amp;volume=77&amp;pages=3865-3868&amp;publication_year=1996&amp;author=Perdew%2CJP&amp;author=Burke%2CK&amp;author=Ernzerhof%2CM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR81\">Tomczak, J. M., Miyake, T., Sakuma, R. &amp; Aryasetiawan, F. Effective Coulomb interactions in solids under pressure. Phys. Rev. B 79, 235133 (2009).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.79.235133\" data-track-item_id=\"10.1103\/PhysRevB.79.235133\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.79.235133\" aria-label=\"Article reference 81\" data-doi=\"10.1103\/PhysRevB.79.235133\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 81\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Effective%20Coulomb%20interactions%20in%20solids%20under%20pressure&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.79.235133&amp;volume=79&amp;publication_year=2009&amp;author=Tomczak%2CJM&amp;author=Miyake%2CT&amp;author=Sakuma%2CR&amp;author=Aryasetiawan%2CF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR82\">Abramovitch, D. J., Zhou, J.-J., Mravlje, J., Georges, A. &amp; Bernardi, M. Combining electron-phonon and dynamical mean-field theory calculations of correlated materials: Transport in the correlated metal Sr2RuO4. Phys. Rev. Mater. 7, 093801 (2023).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevMaterials.7.093801\" data-track-item_id=\"10.1103\/PhysRevMaterials.7.093801\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevMaterials.7.093801\" aria-label=\"Article reference 82\" data-doi=\"10.1103\/PhysRevMaterials.7.093801\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3sXitFOitbbJ\" aria-label=\"CAS reference 82\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 82\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Combining%20electron-phonon%20and%20dynamical%20mean-field%20theory%20calculations%20of%20correlated%20materials%3A%20Transport%20in%20the%20correlated%20metal%20Sr2RuO4&amp;journal=Phys.%20Rev.%20Mater.&amp;doi=10.1103%2FPhysRevMaterials.7.093801&amp;volume=7&amp;publication_year=2023&amp;author=Abramovitch%2CDJ&amp;author=Zhou%2CJ-J&amp;author=Mravlje%2CJ&amp;author=Georges%2CA&amp;author=Bernardi%2CM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR83\">Abramovitch, D. J., Coulter, J., Beck, S. &amp; Millis, A. Electron-phonon coupling in correlated metals: a dynamical mean-field theory study. Phys. Rev. B 112, 075113 (2025).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/467t-z5b2\" data-track-item_id=\"10.1103\/467t-z5b2\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2F467t-z5b2\" aria-label=\"Article reference 83\" data-doi=\"10.1103\/467t-z5b2\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB2MXit1egtb3F\" aria-label=\"CAS reference 83\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 83\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Electron-phonon%20coupling%20in%20correlated%20metals%3A%20a%20dynamical%20mean-field%20theory%20study&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2F467t-z5b2&amp;volume=112&amp;publication_year=2025&amp;author=Abramovitch%2CDJ&amp;author=Coulter%2CJ&amp;author=Beck%2CS&amp;author=Millis%2CA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR84\">Lloyd-Williams, J. H. &amp; Monserrat, B. Lattice dynamics and electron-phonon coupling calculations using nondiagonal supercells. Phys. Rev. B 92, 184301 (2015).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1103\/PhysRevB.92.184301\" data-track-item_id=\"10.1103\/PhysRevB.92.184301\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.92.184301\" aria-label=\"Article reference 84\" data-doi=\"10.1103\/PhysRevB.92.184301\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 84\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Lattice%20dynamics%20and%20electron-phonon%20coupling%20calculations%20using%20nondiagonal%20supercells&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.92.184301&amp;volume=92&amp;publication_year=2015&amp;author=Lloyd-Williams%2CJH&amp;author=Monserrat%2CB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR85\">Ponc\u00e9, S., Margine, E., Verdi, C. &amp; Giustino, F. EPW: Electron-phonon coupling, transport and superconducting properties using maximally localized Wannier functions. Comput. Phys. Commun. 209, 116\u2013133 (2016).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1016\/j.cpc.2016.07.028\" data-track-item_id=\"10.1016\/j.cpc.2016.07.028\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2Fj.cpc.2016.07.028\" aria-label=\"Article reference 85\" data-doi=\"10.1016\/j.cpc.2016.07.028\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 85\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=EPW%3A%20Electron-phonon%20coupling%2C%20transport%20and%20superconducting%20properties%20using%20maximally%20localized%20Wannier%20functions&amp;journal=Comput.%20Phys.%20Commun.&amp;doi=10.1016%2Fj.cpc.2016.07.028&amp;volume=209&amp;pages=116-133&amp;publication_year=2016&amp;author=Ponc%C3%A9%2CS&amp;author=Margine%2CE&amp;author=Verdi%2CC&amp;author=Giustino%2CF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR86\">Lee, H. et al. Electron\u2013phonon physics from first principles using the EPW code. npj Comput. Mater. 9, 156 (2023).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1038\/s41524-023-01107-3\" data-track-item_id=\"10.1038\/s41524-023-01107-3\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41524-023-01107-3\" aria-label=\"Article reference 86\" data-doi=\"10.1038\/s41524-023-01107-3\" target=\"_blank\">Article<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3sXhvVarur3K\" aria-label=\"CAS reference 86\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 86\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Electron%E2%80%93phonon%20physics%20from%20first%20principles%20using%20the%20EPW%20code&amp;journal=npj%20Comput.%20Mater.&amp;doi=10.1038%2Fs41524-023-01107-3&amp;volume=9&amp;publication_year=2023&amp;author=Lee%2CH\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n","protected":false},"excerpt":{"rendered":"Ashcroft, N. W. Metallic hydrogen: A high-temperature superconductor? Phys. Rev. Lett. 21, 1748\u20131749 (1968). Article\u00a0 CAS\u00a0 Google Scholar\u00a0&hellip;\n","protected":false},"author":2,"featured_media":238781,"comment_status":"","ping_status":"","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[24],"tags":[44651,44653,3181,85,46,7146,44652,13175,44654,370,141,13174],"class_list":{"0":"post-238780","1":"post","2":"type-post","3":"status-publish","4":"format-standard","5":"has-post-thumbnail","7":"category-physics","8":"tag-characterization-and-evaluation-of-materials","9":"tag-computational-intelligence","10":"tag-general","11":"tag-il","12":"tag-israel","13":"tag-materials-science","14":"tag-mathematical-and-computational-engineering","15":"tag-mathematical-and-computational-physics","16":"tag-mathematical-modeling-and-industrial-mathematics","17":"tag-physics","18":"tag-science","19":"tag-theoretical"},"_links":{"self":[{"href":"https:\/\/www.newsbeep.com\/il\/wp-json\/wp\/v2\/posts\/238780","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.newsbeep.com\/il\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/www.newsbeep.com\/il\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/il\/wp-json\/wp\/v2\/users\/2"}],"replies":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/il\/wp-json\/wp\/v2\/comments?post=238780"}],"version-history":[{"count":0,"href":"https:\/\/www.newsbeep.com\/il\/wp-json\/wp\/v2\/posts\/238780\/revisions"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/il\/wp-json\/wp\/v2\/media\/238781"}],"wp:attachment":[{"href":"https:\/\/www.newsbeep.com\/il\/wp-json\/wp\/v2\/media?parent=238780"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/www.newsbeep.com\/il\/wp-json\/wp\/v2\/categories?post=238780"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/www.newsbeep.com\/il\/wp-json\/wp\/v2\/tags?post=238780"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}