{"id":685194,"date":"2026-06-05T04:02:13","date_gmt":"2026-06-05T04:02:13","guid":{"rendered":"https:\/\/www.newsbeep.com\/us\/685194\/"},"modified":"2026-06-05T04:02:13","modified_gmt":"2026-06-05T04:02:13","slug":"giant-gate-response-of-the-charge-in-an-electron-lattice-condensate","status":"publish","type":"post","link":"https:\/\/www.newsbeep.com\/us\/685194\/","title":{"rendered":"Giant gate response of the charge in an electron\u2013lattice condensate"},"content":{"rendered":"<p class=\"c-article-references__text\" id=\"ref-CR1\">Ramesh, R. et al. Roadmap on low-power electronics. APL Mater. 12, 099201 (2024).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1063\/5.0184774\" data-track-item_id=\"10.1063\/5.0184774\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1063%2F5.0184774\" aria-label=\"Article reference 1\" data-doi=\"10.1063\/5.0184774\" 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 1\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Roadmap%20on%20low-power%20electronics&amp;journal=APL%20Mater.&amp;doi=10.1063%2F5.0184774&amp;volume=12&amp;publication_year=2024&amp;author=Ramesh%2CR\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR2\">Dissanayake, K. &amp; Kularatna-Abeywardana, D. A review of supercapacitors: materials, technology challenges, and renewable energy applications. J. Energy Storage 96, 112563 (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.est.2024.112563\" data-track-item_id=\"10.1016\/j.est.2024.112563\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2Fj.est.2024.112563\" aria-label=\"Article reference 2\" data-doi=\"10.1016\/j.est.2024.112563\" 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 2\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=A%20review%20of%20supercapacitors%3A%20materials%2C%20technology%20challenges%2C%20and%20renewable%20energy%20applications&amp;journal=J.%20Energy%20Storage&amp;doi=10.1016%2Fj.est.2024.112563&amp;volume=96&amp;publication_year=2024&amp;author=Dissanayake%2CK&amp;author=Kularatna-Abeywardana%2CD\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR3\">Cheema, S. S. et al. Giant energy storage and power density negative capacitance superlattices. Nature 629, 803\u2013809 (2024).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1038\/s41586-024-07365-5\" data-track-item_id=\"10.1038\/s41586-024-07365-5\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41586-024-07365-5\" aria-label=\"Article reference 3\" data-doi=\"10.1038\/s41586-024-07365-5\" 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 3\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Giant%20energy%20storage%20and%20power%20density%20negative%20capacitance%20superlattices&amp;journal=Nature&amp;doi=10.1038%2Fs41586-024-07365-5&amp;volume=629&amp;pages=803-809&amp;publication_year=2024&amp;author=Cheema%2CSS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR4\">Salahuddin, S. &amp; Datta, S. Use of negative capacitance to provide voltage amplification for low power nanoscale devices. Nano Lett. 8, 405\u2013410 (2008).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1021\/nl071804g\" data-track-item_id=\"10.1021\/nl071804g\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1021%2Fnl071804g\" aria-label=\"Article reference 4\" data-doi=\"10.1021\/nl071804g\" 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=Use%20of%20negative%20capacitance%20to%20provide%20voltage%20amplification%20for%20low%20power%20nanoscale%20devices&amp;journal=Nano%20Lett.&amp;doi=10.1021%2Fnl071804g&amp;volume=8&amp;pages=405-410&amp;publication_year=2008&amp;author=Salahuddin%2CS&amp;author=Datta%2CS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR5\">Tan, C. et al. Gate-controlled magnetic phase transition in a van der Waals magnet Fe5GeTe2. Nano Lett. 21, 5599\u20135605 (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.nanolett.1c01108\" data-track-item_id=\"10.1021\/acs.nanolett.1c01108\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1021%2Facs.nanolett.1c01108\" aria-label=\"Article reference 5\" data-doi=\"10.1021\/acs.nanolett.1c01108\" 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 5\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Gate-controlled%20magnetic%20phase%20transition%20in%20a%20van%20der%20Waals%20magnet%20Fe5GeTe2&amp;journal=Nano%20Lett.&amp;doi=10.1021%2Facs.nanolett.1c01108&amp;volume=21&amp;pages=5599-5605&amp;publication_year=2021&amp;author=Tan%2CC\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR6\">Polshyn, H. et al. Electrical switching of magnetic order in an orbital Chern insulator. Nature 588, 66\u201370 (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\/s41586-020-2963-8\" data-track-item_id=\"10.1038\/s41586-020-2963-8\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41586-020-2963-8\" aria-label=\"Article reference 6\" data-doi=\"10.1038\/s41586-020-2963-8\" 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 6\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Electrical%20switching%20of%20magnetic%20order%20in%20an%20orbital%20Chern%20insulator&amp;journal=Nature&amp;doi=10.1038%2Fs41586-020-2963-8&amp;volume=588&amp;pages=66-70&amp;publication_year=2020&amp;author=Polshyn%2CH\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR7\">Liu, P., Lei, B., Chen, X., Wang, L. &amp; Wang, X. Superior carrier tuning in ultrathin superconducting materials by electric-field gating. Nature Rev. Phys. 4, 336\u2013352 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1038\/s42254-022-00438-2\" data-track-item_id=\"10.1038\/s42254-022-00438-2\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs42254-022-00438-2\" aria-label=\"Article reference 7\" data-doi=\"10.1038\/s42254-022-00438-2\" 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 7\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Superior%20carrier%20tuning%20in%20ultrathin%20superconducting%20materials%20by%20electric-field%20gating&amp;journal=Nature%20Rev.%20Phys.&amp;doi=10.1038%2Fs42254-022-00438-2&amp;volume=4&amp;pages=336-352&amp;publication_year=2022&amp;author=Liu%2CP&amp;author=Lei%2CB&amp;author=Chen%2CX&amp;author=Wang%2CL&amp;author=Wang%2CX\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR8\">Ueno, K. et al. Electric-field-induced superconductivity in an insulator. Nature Mater. 7, 855\u2013858 (2008).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1038\/nmat2298\" data-track-item_id=\"10.1038\/nmat2298\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fnmat2298\" aria-label=\"Article reference 8\" data-doi=\"10.1038\/nmat2298\" 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 8\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Electric-field-induced%20superconductivity%20in%20an%20insulator&amp;journal=Nature%20Mater.&amp;doi=10.1038%2Fnmat2298&amp;volume=7&amp;pages=855-858&amp;publication_year=2008&amp;author=Ueno%2CK\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR9\">Adelman, T. L., Zaitsev-Zotov, S. V. &amp; Thorne, R. E. Field-effect modulation of charge-density-wave transport in NbSe3 and TaS3. Phys. Rev. Lett. 74, 5264\u20135267 (1995).<\/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.74.5264\" data-track-item_id=\"10.1103\/PhysRevLett.74.5264\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevLett.74.5264\" aria-label=\"Article reference 9\" data-doi=\"10.1103\/PhysRevLett.74.5264\" 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 9\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Field-effect%20modulation%20of%20charge-density-wave%20transport%20in%20NbSe3%20and%20TaS3&amp;journal=Phys.%20Rev.%20Lett.&amp;doi=10.1103%2FPhysRevLett.74.5264&amp;volume=74&amp;pages=5264-5267&amp;publication_year=1995&amp;author=Adelman%2CTL&amp;author=Zaitsev-Zotov%2CSV&amp;author=Thorne%2CRE\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR10\">Li, L. J. et al. Controlling many-body states by the electric-field effect in a two-dimensional material. Nature 529, 185\u2013189 (2016).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1038\/nature16175\" data-track-item_id=\"10.1038\/nature16175\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fnature16175\" aria-label=\"Article reference 10\" data-doi=\"10.1038\/nature16175\" 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 10\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Controlling%20many-body%20states%20by%20the%20electric-field%20effect%20in%20a%20two-dimensional%20material&amp;journal=Nature&amp;doi=10.1038%2Fnature16175&amp;volume=529&amp;pages=185-189&amp;publication_year=2016&amp;author=Li%2CLJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR11\">Mannhart, J. &amp; Schlom, D. G. Oxide interfaces\u2014an opportunity for electronics. Science 327, 1607\u20131611 (2010).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1126\/science.1181862\" data-track-item_id=\"10.1126\/science.1181862\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1126%2Fscience.1181862\" aria-label=\"Article reference 11\" data-doi=\"10.1126\/science.1181862\" 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 11\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Oxide%20interfaces%E2%80%94an%20opportunity%20for%20electronics&amp;journal=Science&amp;doi=10.1126%2Fscience.1181862&amp;volume=327&amp;pages=1607-1611&amp;publication_year=2010&amp;author=Mannhart%2CJ&amp;author=Schlom%2CDG\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR12\">Li, L. et al. Very large capacitance enhancement in a two-dimensional electron system. Science 332, 825\u2013828 (2011).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1126\/science.1204168\" data-track-item_id=\"10.1126\/science.1204168\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1126%2Fscience.1204168\" aria-label=\"Article reference 12\" data-doi=\"10.1126\/science.1204168\" 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 12\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Very%20large%20capacitance%20enhancement%20in%20a%20two-dimensional%20electron%20system&amp;journal=Science&amp;doi=10.1126%2Fscience.1204168&amp;volume=332&amp;pages=825-828&amp;publication_year=2011&amp;author=Li%2CL\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR13\">Gr\u00fcner, G. Density Waves in Solids 1st edn (CRC, 1994).<\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR14\">Fr\u00f6hlich, H. On the theory of superconductivity: the one-dimensional case. Proc. R. Soc. London. Ser. A. Math. Phys. Sci. 223, 296\u2013305 (1954).<\/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 14\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=On%20the%20theory%20of%20superconductivity%3A%20the%20one-dimensional%20case&amp;journal=Proc.%20R.%20Soc.%20London.%20Ser.%20A.%20Math.%20Phys.%20Sci.&amp;volume=223&amp;pages=296-305&amp;publication_year=1954&amp;author=Fr%C3%B6hlich%2CH\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR15\">Zaitsev-Zotov, S. V. Finite-size effects in quasi-one-dimensional conductors with a charge-density wave. Phys. Usp. 47, 533\u2013554 (2004).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1070\/PU2004v047n06ABEH001675\" data-track-item_id=\"10.1070\/PU2004v047n06ABEH001675\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1070%2FPU2004v047n06ABEH001675\" aria-label=\"Article reference 15\" data-doi=\"10.1070\/PU2004v047n06ABEH001675\" 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 15\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Finite-size%20effects%20in%20quasi-one-dimensional%20conductors%20with%20a%20charge-density%20wave&amp;journal=Phys.%20Usp.&amp;doi=10.1070%2FPU2004v047n06ABEH001675&amp;volume=47&amp;pages=533-554&amp;publication_year=2004&amp;author=Zaitsev-Zotov%2CSV\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR16\">Monceau, P. Electronic crystals: an experimental overview. Adv. Phys. 61, 325\u2013581 (2012).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1080\/00018732.2012.719674\" data-track-item_id=\"10.1080\/00018732.2012.719674\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1080%2F00018732.2012.719674\" aria-label=\"Article reference 16\" data-doi=\"10.1080\/00018732.2012.719674\" 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 16\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Electronic%20crystals%3A%20an%20experimental%20overview&amp;journal=Adv.%20Phys.&amp;doi=10.1080%2F00018732.2012.719674&amp;volume=61&amp;pages=325-581&amp;publication_year=2012&amp;author=Monceau%2CP\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR17\">Briggs, A. et al. Charge density wave formation, superconductivity and Fermi surface determination in NbSe3: a pressure study. J. Phys. C: Solid State Phys. 13, 2117 (1980).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1088\/0022-3719\/13\/11\/011\" data-track-item_id=\"10.1088\/0022-3719\/13\/11\/011\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1088%2F0022-3719%2F13%2F11%2F011\" aria-label=\"Article reference 17\" data-doi=\"10.1088\/0022-3719\/13\/11\/011\" 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 17\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Charge%20density%20wave%20formation%2C%20superconductivity%20and%20Fermi%20surface%20determination%20in%20NbSe3%3A%20a%20pressure%20study&amp;journal=J.%20Phys.%20C%3A%20Solid%20State%20Phys.&amp;doi=10.1088%2F0022-3719%2F13%2F11%2F011&amp;volume=13&amp;publication_year=1980&amp;author=Briggs%2CA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR18\">Chang, J. et al. Direct observation of competition between superconductivity and charge density wave order in YBa2Cu3O6.67. Nat. Phys. 8, 871\u2013876 (2012).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1038\/nphys2456\" data-track-item_id=\"10.1038\/nphys2456\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fnphys2456\" aria-label=\"Article reference 18\" data-doi=\"10.1038\/nphys2456\" 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 18\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Direct%20observation%20of%20competition%20between%20superconductivity%20and%20charge%20density%20wave%20order%20in%20YBa2Cu3O6.67&amp;journal=Nat.%20Phys.&amp;doi=10.1038%2Fnphys2456&amp;volume=8&amp;pages=871-876&amp;publication_year=2012&amp;author=Chang%2CJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR19\">Yu, F. H. et al. Unusual competition of superconductivity and charge-density-wave state in a compressed topological kagome metal. Nat. Commun. 12, 3645 (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\/s41467-021-23928-w\" data-track-item_id=\"10.1038\/s41467-021-23928-w\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41467-021-23928-w\" aria-label=\"Article reference 19\" data-doi=\"10.1038\/s41467-021-23928-w\" 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 19\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Unusual%20competition%20of%20superconductivity%20and%20charge-density-wave%20state%20in%20a%20compressed%20topological%20kagome%20metal&amp;journal=Nat.%20Commun.&amp;doi=10.1038%2Fs41467-021-23928-w&amp;volume=12&amp;publication_year=2021&amp;author=Yu%2CFH\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR20\">Hanasaki, N. et al. Interplay between charge density wave and antiferromagnetic order in GdNiC2. Phys. Rev. B 95, 085103 (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\/PhysRevB.95.085103\" data-track-item_id=\"10.1103\/PhysRevB.95.085103\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.95.085103\" aria-label=\"Article reference 20\" data-doi=\"10.1103\/PhysRevB.95.085103\" 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 20\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Interplay%20between%20charge%20density%20wave%20and%20antiferromagnetic%20order%20in%20GdNiC2&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.95.085103&amp;volume=95&amp;publication_year=2017&amp;author=Hanasaki%2CN\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR21\">Kawasaki, S. et al. Charge-density-wave order takes over antiferromagnetism in Bi2Sr2-xLaxCuO6 superconductors. Nat. Commun. 8, 1267 (2017).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1038\/s41467-017-01465-9\" data-track-item_id=\"10.1038\/s41467-017-01465-9\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41467-017-01465-9\" aria-label=\"Article reference 21\" data-doi=\"10.1038\/s41467-017-01465-9\" 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 21\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Charge-density-wave%20order%20takes%20over%20antiferromagnetism%20in%20Bi2Sr2-xLaxCuO6%20superconductors&amp;journal=Nat.%20Commun.&amp;doi=10.1038%2Fs41467-017-01465-9&amp;volume=8&amp;publication_year=2017&amp;author=Kawasaki%2CS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR22\">Yu, Y. et al. Gate-tunable phase transitions in thin flakes of 1T-TaS2. Nat. Nanotechnol. 10, 270\u2013276 (2015).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1038\/nnano.2014.323\" data-track-item_id=\"10.1038\/nnano.2014.323\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fnnano.2014.323\" aria-label=\"Article reference 22\" data-doi=\"10.1038\/nnano.2014.323\" 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 22\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Gate-tunable%20phase%20transitions%20in%20thin%20flakes%20of%201T-TaS2&amp;journal=Nat.%20Nanotechnol.&amp;doi=10.1038%2Fnnano.2014.323&amp;volume=10&amp;pages=270-276&amp;publication_year=2015&amp;author=Yu%2CY\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR23\">Liu, G. et al. A charge-density-wave oscillator based on an integrated tantalum disulfide\u2013boron nitride\u2013graphene device operating at room temperature. Nat. Nanotechnol. 11, 845\u2013850 (2016).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1038\/nnano.2016.108\" data-track-item_id=\"10.1038\/nnano.2016.108\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fnnano.2016.108\" aria-label=\"Article reference 23\" data-doi=\"10.1038\/nnano.2016.108\" 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=A%20charge-density-wave%20oscillator%20based%20on%20an%20integrated%20tantalum%20disulfide%E2%80%93boron%20nitride%E2%80%93graphene%20device%20operating%20at%20room%20temperature&amp;journal=Nat.%20Nanotechnol.&amp;doi=10.1038%2Fnnano.2016.108&amp;volume=11&amp;pages=845-850&amp;publication_year=2016&amp;author=Liu%2CG\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR24\">Taheri, M. et al. Electrical gating of the charge-density-wave phases in two-dimensional h-BN\/1T-TaS2 devices. ACS Nano 16, 18968\u201318977 (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\/acsnano.2c07876\" data-track-item_id=\"10.1021\/acsnano.2c07876\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1021%2Facsnano.2c07876\" aria-label=\"Article reference 24\" data-doi=\"10.1021\/acsnano.2c07876\" 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=Electrical%20gating%20of%20the%20charge-density-wave%20phases%20in%20two-dimensional%20h-BN%2F1T-TaS2%20devices&amp;journal=ACS%20Nano&amp;doi=10.1021%2Facsnano.2c07876&amp;volume=16&amp;pages=18968-18977&amp;publication_year=2022&amp;author=Taheri%2CM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR25\">Xi, X., Berger, H., Forr\u00f3, L., Shan, J. &amp; Mak, K. F. Gate tuning of electronic phase transitions in two-dimensional NbSe2. Phys. Rev. Lett. 117, 106801 (2016).<\/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.117.106801\" data-track-item_id=\"10.1103\/PhysRevLett.117.106801\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevLett.117.106801\" aria-label=\"Article reference 25\" data-doi=\"10.1103\/PhysRevLett.117.106801\" 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=Gate%20tuning%20of%20electronic%20phase%20transitions%20in%20two-dimensional%20NbSe2&amp;journal=Phys.%20Rev.%20Lett.&amp;doi=10.1103%2FPhysRevLett.117.106801&amp;volume=117&amp;publication_year=2016&amp;author=Xi%2CX&amp;author=Berger%2CH&amp;author=Forr%C3%B3%2CL&amp;author=Shan%2CJ&amp;author=Mak%2CKF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR26\">Zhang, K. et al. Evidence for a quasi-one-dimensional charge density wave in CuTe by angle-resolved photoemission spectroscopy. Phys. Rev. Lett. 121, 206402 (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\/PhysRevLett.121.206402\" data-track-item_id=\"10.1103\/PhysRevLett.121.206402\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevLett.121.206402\" aria-label=\"Article reference 26\" data-doi=\"10.1103\/PhysRevLett.121.206402\" 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 26\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Evidence%20for%20a%20quasi-one-dimensional%20charge%20density%20wave%20in%20CuTe%20by%20angle-resolved%20photoemission%20spectroscopy&amp;journal=Phys.%20Rev.%20Lett.&amp;doi=10.1103%2FPhysRevLett.121.206402&amp;volume=121&amp;publication_year=2018&amp;author=Zhang%2CK\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR27\">Zettl, A. &amp; Gr\u00fcner, G. Phase coherence in the current carrying charge-density-wave state: ac-dc coupling experiments in NbSe3. Phys. Rev. B 29, 755\u2013767 (1984).<\/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.29.755\" data-track-item_id=\"10.1103\/PhysRevB.29.755\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.29.755\" aria-label=\"Article reference 27\" data-doi=\"10.1103\/PhysRevB.29.755\" 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=Phase%20coherence%20in%20the%20current%20carrying%20charge-density-wave%20state%3A%20ac-dc%20coupling%20experiments%20in%20NbSe3&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.29.755&amp;volume=29&amp;pages=755-767&amp;publication_year=1984&amp;author=Zettl%2CA&amp;author=Gr%C3%BCner%2CG\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR28\">Nikonov, S. A., Zybtsev, S. G., Maizlakh, A. A. &amp; Pokrovskii, V. Y. Prediction of the effects of rf irradiation on the I\u2013V curves of a CDW compound. Appl. Phys. Lett. 118, 213106 (2021).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1063\/5.0051314\" data-track-item_id=\"10.1063\/5.0051314\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1063%2F5.0051314\" aria-label=\"Article reference 28\" data-doi=\"10.1063\/5.0051314\" 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=Prediction%20of%20the%20effects%20of%20rf%20irradiation%20on%20the%20I%E2%80%93V%20curves%20of%20a%20CDW%20compound&amp;journal=Appl.%20Phys.%20Lett.&amp;doi=10.1063%2F5.0051314&amp;volume=118&amp;publication_year=2021&amp;author=Nikonov%2CSA&amp;author=Zybtsev%2CSG&amp;author=Maizlakh%2CAA&amp;author=Pokrovskii%2CVY\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR29\">Cao, Y. et al. Unconventional superconductivity in magic-angle graphene superlattices. Nature 556, 43\u201350 (2018).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1038\/nature26160\" data-track-item_id=\"10.1038\/nature26160\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fnature26160\" aria-label=\"Article reference 29\" data-doi=\"10.1038\/nature26160\" 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=Unconventional%20superconductivity%20in%20magic-angle%20graphene%20superlattices&amp;journal=Nature&amp;doi=10.1038%2Fnature26160&amp;volume=556&amp;pages=43-50&amp;publication_year=2018&amp;author=Cao%2CY\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR30\">Xia, Y. et al. Superconductivity in twisted bilayer WSe2. Nature 637, 833\u2013838 (2025).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1038\/s41586-024-08116-2\" data-track-item_id=\"10.1038\/s41586-024-08116-2\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41586-024-08116-2\" aria-label=\"Article reference 30\" data-doi=\"10.1038\/s41586-024-08116-2\" 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 30\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Superconductivity%20in%20twisted%20bilayer%20WSe2&amp;journal=Nature&amp;doi=10.1038%2Fs41586-024-08116-2&amp;volume=637&amp;pages=833-838&amp;publication_year=2025&amp;author=Xia%2CY\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR31\">Mihailovic, D. et al. Ultrafast non-thermal and thermal switching in charge configuration memory devices based on 1T-TaS2. Appl. Phys. Lett. 119, 013106 (2021).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1063\/5.0052311\" data-track-item_id=\"10.1063\/5.0052311\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1063%2F5.0052311\" aria-label=\"Article reference 31\" data-doi=\"10.1063\/5.0052311\" 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=Ultrafast%20non-thermal%20and%20thermal%20switching%20in%20charge%20configuration%20memory%20devices%20based%20on%201T-TaS2&amp;journal=Appl.%20Phys.%20Lett.&amp;doi=10.1063%2F5.0052311&amp;volume=119&amp;publication_year=2021&amp;author=Mihailovic%2CD\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR32\">Mraz, A. et al. Charge configuration memory devices: energy efficiency and switching speed. Nano Lett. 22, 4814\u20134821 (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\/acs.nanolett.2c01116\" data-track-item_id=\"10.1021\/acs.nanolett.2c01116\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1021%2Facs.nanolett.2c01116\" aria-label=\"Article reference 32\" data-doi=\"10.1021\/acs.nanolett.2c01116\" 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 32\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Charge%20configuration%20memory%20devices%3A%20energy%20efficiency%20and%20switching%20speed&amp;journal=Nano%20Lett.&amp;doi=10.1021%2Facs.nanolett.2c01116&amp;volume=22&amp;pages=4814-4821&amp;publication_year=2022&amp;author=Mraz%2CA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR33\">Yao, C. et al. Electric field effect on the charge density wave in the quasi-one-dimensional semimetal Ta2NiSe7. Phys. Rev. B 110, 165136 (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.110.165136\" data-track-item_id=\"10.1103\/PhysRevB.110.165136\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.110.165136\" aria-label=\"Article reference 33\" data-doi=\"10.1103\/PhysRevB.110.165136\" 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 33\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Electric%20field%20effect%20on%20the%20charge%20density%20wave%20in%20the%20quasi-one-dimensional%20semimetal%20Ta2NiSe7&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.110.165136&amp;volume=110&amp;publication_year=2024&amp;author=Yao%2CC\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR34\">Mih\u00e1ly, G., Hutiray, G. Y. &amp; Mih\u00e1ly, L. Macroscopic coherence length of charge-density waves in orthorhombic TaS3. Phys. Rev. B 28, 4896\u20134899 (1983).<\/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.28.4896\" data-track-item_id=\"10.1103\/PhysRevB.28.4896\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.28.4896\" aria-label=\"Article reference 34\" data-doi=\"10.1103\/PhysRevB.28.4896\" 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 34\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Macroscopic%20coherence%20length%20of%20charge-density%20waves%20in%20orthorhombic%20TaS3&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.28.4896&amp;volume=28&amp;pages=4896-4899&amp;publication_year=1983&amp;author=Mih%C3%A1ly%2CG&amp;author=Hutiray%2CGY&amp;author=Mih%C3%A1ly%2CL\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR35\">Patra, A. &amp; Rout, C. S. Anisotropic quasi-one-dimensional layered transition-metal trichalcogenides: synthesis, properties and applications. RCS Adv. 10, 36413\u201336438 (2020).<\/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 35\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Anisotropic%20quasi-one-dimensional%20layered%20transition-metal%20trichalcogenides%3A%20synthesis%2C%20properties%20and%20applications&amp;journal=RCS%20Adv.&amp;volume=10&amp;pages=36413-36438&amp;publication_year=2020&amp;author=Patra%2CA&amp;author=Rout%2CCS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR36\">Wu, K. et al. Unusual pressure response of vibrational modes in anisotropic TaS3. J. Phys. Chem. C 121, 28187\u201328193 (2017).<\/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.jpcc.7b10263\" data-track-item_id=\"10.1021\/acs.jpcc.7b10263\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1021%2Facs.jpcc.7b10263\" aria-label=\"Article reference 36\" data-doi=\"10.1021\/acs.jpcc.7b10263\" 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 36\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Unusual%20pressure%20response%20of%20vibrational%20modes%20in%20anisotropic%20TaS3&amp;journal=J.%20Phys.%20Chem.%20C&amp;doi=10.1021%2Facs.jpcc.7b10263&amp;volume=121&amp;pages=28187-28193&amp;publication_year=2017&amp;author=Wu%2CK\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR37\">Meerschaut, A., Rouxel, J., Haen, P., Monceau, P. &amp; N\u00fa\u00f1ez-Regueiro, M. Obtention of a new phase of the one-dimensional compound TaS3: X-ray characterization and electrical measurements. J. Physique Lett. 40, 157\u2013159 (1979).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1051\/jphyslet:01979004007015700\" data-track-item_id=\"10.1051\/jphyslet:01979004007015700\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1051%2Fjphyslet%3A01979004007015700\" aria-label=\"Article reference 37\" data-doi=\"10.1051\/jphyslet:01979004007015700\" 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=Obtention%20of%20a%20new%20phase%20of%20the%20one-dimensional%20compound%20TaS3%3A%20X-ray%20characterization%20and%20electrical%20measurements&amp;journal=J.%20Physique%20Lett.&amp;doi=10.1051%2Fjphyslet%3A01979004007015700&amp;volume=40&amp;pages=157-159&amp;publication_year=1979&amp;author=Meerschaut%2CA&amp;author=Rouxel%2CJ&amp;author=Haen%2CP&amp;author=Monceau%2CP&amp;author=N%C3%BA%C3%B1ez-Regueiro%2CM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR38\">Wang, Z. Z. et al. Incommensurate-commensurate transition in TaS3. J. Physique Lett. 44, 311\u2013319 (1983).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1051\/jphyslet:01983004408031100\" data-track-item_id=\"10.1051\/jphyslet:01983004408031100\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1051%2Fjphyslet%3A01983004408031100\" aria-label=\"Article reference 38\" data-doi=\"10.1051\/jphyslet:01983004408031100\" 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 38\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Incommensurate-commensurate%20transition%20in%20TaS3&amp;journal=J.%20Physique%20Lett.&amp;doi=10.1051%2Fjphyslet%3A01983004408031100&amp;volume=44&amp;pages=311-319&amp;publication_year=1983&amp;author=Wang%2CZZ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR39\">Higgs, A. &amp; Gill, J. Hysteresis in the electrical properties of orthorhombic tantalum trisulphide: evidence for an incommensurate-commensurate charge-density wave transition? Solid State Commun. 47, 737\u2013742 (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\/0038-1098(83)90646-4\" data-track-item_id=\"10.1016\/0038-1098(83)90646-4\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2F0038-1098%2883%2990646-4\" aria-label=\"Article reference 39\" data-doi=\"10.1016\/0038-1098(83)90646-4\" 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 39\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Hysteresis%20in%20the%20electrical%20properties%20of%20orthorhombic%20tantalum%20trisulphide%3A%20evidence%20for%20an%20incommensurate-commensurate%20charge-density%20wave%20transition%3F&amp;journal=Solid%20State%20Commun.&amp;doi=10.1016%2F0038-1098%2883%2990646-4&amp;volume=47&amp;pages=737-742&amp;publication_year=1983&amp;author=Higgs%2CA&amp;author=Gill%2CJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR40\">Sambongi, T. et al. Peierls transition in TaS3. Solid State Commun. 22, 729\u2013731 (1977).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1016\/0038-1098(77)90055-2\" data-track-item_id=\"10.1016\/0038-1098(77)90055-2\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2F0038-1098%2877%2990055-2\" aria-label=\"Article reference 40\" data-doi=\"10.1016\/0038-1098(77)90055-2\" 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 40\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Peierls%20transition%20in%20TaS3&amp;journal=Solid%20State%20Commun.&amp;doi=10.1016%2F0038-1098%2877%2990055-2&amp;volume=22&amp;pages=729-731&amp;publication_year=1977&amp;author=Sambongi%2CT\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR41\">Zettl, A., Gr\u00fcner, G. &amp; Thompson, A. H. Charge-density-wave transport in orthorhombic TaS3. I. Nonlinear conductivity. Phys. Rev. B 26, 5760\u20135772 (1982).<\/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.26.5760\" data-track-item_id=\"10.1103\/PhysRevB.26.5760\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.26.5760\" aria-label=\"Article reference 41\" data-doi=\"10.1103\/PhysRevB.26.5760\" 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 41\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Charge-density-wave%20transport%20in%20orthorhombic%20TaS3.%20I.%20Nonlinear%20conductivity&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.26.5760&amp;volume=26&amp;pages=5760-5772&amp;publication_year=1982&amp;author=Zettl%2CA&amp;author=Gr%C3%BCner%2CG&amp;author=Thompson%2CAH\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR42\">Gross, F. et al. Anomalous temperature dependence of the magnetic field penetration depth in superconducting Ube13. Zeitschrift f\u00fcr Physik B Condensed Matter 64, 175\u2013188 (1986).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"noopener nofollow\" data-track-label=\"10.1007\/BF01303700\" data-track-item_id=\"10.1007\/BF01303700\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/link.springer.com\/doi\/10.1007\/BF01303700\" aria-label=\"Article reference 42\" data-doi=\"10.1007\/BF01303700\" 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 42\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Anomalous%20temperature%20dependence%20of%20the%20magnetic%20field%20penetration%20depth%20in%20superconducting%20Ube13&amp;journal=Zeitschrift%20f%C3%BCr%20Physik%20B%20Condensed%20Matter&amp;doi=10.1007%2FBF01303700&amp;volume=64&amp;pages=175-188&amp;publication_year=1986&amp;author=Gross%2CF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR43\">Ong, N. P. et al. Microwave and Hall studies of TaS3 and NbS3. Mol. Cryst. Liq. Cryst. 81, 41\u201347 (1981).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1080\/00268948208072549\" data-track-item_id=\"10.1080\/00268948208072549\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1080%2F00268948208072549\" aria-label=\"Article reference 43\" data-doi=\"10.1080\/00268948208072549\" 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 43\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Microwave%20and%20Hall%20studies%20of%20TaS3%20and%20NbS3&amp;journal=Mol.%20Cryst.%20Liq.%20Cryst.&amp;doi=10.1080%2F00268948208072549&amp;volume=81&amp;pages=41-47&amp;publication_year=1981&amp;author=Ong%2CNP\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR44\">Latyshev, Y.uI., Savitskaya, Ya.S. &amp; Frolov, V. V. Hall effect accompanying a Peierls transition in TaS3. JETP Lett. 38, 541\u2013544 (1983).<\/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 44\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Hall%20effect%20accompanying%20a%20Peierls%20transition%20in%20TaS3&amp;journal=JETP%20Lett.&amp;volume=38&amp;pages=541-544&amp;publication_year=1983&amp;author=Latyshev%2CYuI&amp;author=Savitskaya%2CYaS&amp;author=Frolov%2CVV\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR45\">Sinchenko, A. A. et al. Hall effect in the pinned and sliding charge density wave state of NbSe3. J. Phys. Condens. Matter 21, 435601 (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\/43\/435601\" data-track-item_id=\"10.1088\/0953-8984\/21\/43\/435601\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1088%2F0953-8984%2F21%2F43%2F435601\" aria-label=\"Article reference 45\" data-doi=\"10.1088\/0953-8984\/21\/43\/435601\" 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 45\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Hall%20effect%20in%20the%20pinned%20and%20sliding%20charge%20density%20wave%20state%20of%20NbSe3&amp;journal=J.%20Phys.%20Condens.%20Matter&amp;doi=10.1088%2F0953-8984%2F21%2F43%2F435601&amp;volume=21&amp;publication_year=2009&amp;author=Sinchenko%2CAA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR46\">Sze, S. M. Physics of Semiconductor Devices 2nd edn (Wiley, 1981).<\/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 46\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Physics%20of%20Semiconductor%20Devices&amp;publication_year=1981&amp;author=Sze%2CSM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR47\">Thompson, A. H., Zettl, A. &amp; Gr\u00fcner, G. Charge-density-wave transport in TaS3. Phys. Rev. Lett. 47, 64\u201367 (1981).<\/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.47.64\" data-track-item_id=\"10.1103\/PhysRevLett.47.64\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevLett.47.64\" aria-label=\"Article reference 47\" data-doi=\"10.1103\/PhysRevLett.47.64\" 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 47\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Charge-density-wave%20transport%20in%20TaS3&amp;journal=Phys.%20Rev.%20Lett.&amp;doi=10.1103%2FPhysRevLett.47.64&amp;volume=47&amp;pages=64-67&amp;publication_year=1981&amp;author=Thompson%2CAH&amp;author=Zettl%2CA&amp;author=Gr%C3%BCner%2CG\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR48\">Cava, R. J., Fleming, R. M., Dunn, R. G. &amp; Rietman, E. A. Low-frequency dielectric response of the charge-density wave in orthorhombic TaS3. Phys. Rev. B 31, 8325\u20138328 (1985).<\/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.31.8325\" data-track-item_id=\"10.1103\/PhysRevB.31.8325\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.31.8325\" aria-label=\"Article reference 48\" data-doi=\"10.1103\/PhysRevB.31.8325\" 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 48\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Low-frequency%20dielectric%20response%20of%20the%20charge-density%20wave%20in%20orthorhombic%20TaS3&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.31.8325&amp;volume=31&amp;pages=8325-8328&amp;publication_year=1985&amp;author=Cava%2CRJ&amp;author=Fleming%2CRM&amp;author=Dunn%2CRG&amp;author=Rietman%2CEA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR49\">Shu-Nan, M. &amp; Maki, M. Dielectric anisotropy in the charge-density-wave state of K0.3MoO3. J. Phys. Soc. Jpn 80, 084706 (2011).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1143\/JPSJ.80.084706\" data-track-item_id=\"10.1143\/JPSJ.80.084706\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1143%2FJPSJ.80.084706\" aria-label=\"Article reference 49\" data-doi=\"10.1143\/JPSJ.80.084706\" 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 49\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Dielectric%20anisotropy%20in%20the%20charge-density-wave%20state%20of%20K0.3MoO3&amp;journal=J.%20Phys.%20Soc.%20Jpn&amp;doi=10.1143%2FJPSJ.80.084706&amp;volume=80&amp;publication_year=2011&amp;author=Shu-Nan%2CM&amp;author=Maki%2CM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR50\">Kopp, T. &amp; Mannhart, J. Calculation of the capacitances of conductors: perspectives for the optimization of electronic devices. J. Appl. Phys. 106, 064504 (2009).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1063\/1.3197246\" data-track-item_id=\"10.1063\/1.3197246\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1063%2F1.3197246\" aria-label=\"Article reference 50\" data-doi=\"10.1063\/1.3197246\" 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=Calculation%20of%20the%20capacitances%20of%20conductors%3A%20perspectives%20for%20the%20optimization%20of%20electronic%20devices&amp;journal=J.%20Appl.%20Phys.&amp;doi=10.1063%2F1.3197246&amp;volume=106&amp;publication_year=2009&amp;author=Kopp%2CT&amp;author=Mannhart%2CJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR51\">Kroemer, H. Noble lecture: quasielectric fields and band offsets: teaching electrons new tricks. Rev. Mod. Phys. 73, 783\u2013793 (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\/RevModPhys.73.783\" data-track-item_id=\"10.1103\/RevModPhys.73.783\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FRevModPhys.73.783\" aria-label=\"Article reference 51\" data-doi=\"10.1103\/RevModPhys.73.783\" 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=Noble%20lecture%3A%20quasielectric%20fields%20and%20band%20offsets%3A%20teaching%20electrons%20new%20tricks&amp;journal=Rev.%20Mod.%20Phys.&amp;doi=10.1103%2FRevModPhys.73.783&amp;volume=73&amp;pages=783-793&amp;publication_year=2001&amp;author=Kroemer%2CH\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR52\">Mayorga-Martinez, C. C. et al. TaS3 nanofibers: layered trichalcogenide for high-performance electronic and sensing devices. ACS Nano 12, 464\u2013473 (2018).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1021\/acsnano.7b06853\" data-track-item_id=\"10.1021\/acsnano.7b06853\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1021%2Facsnano.7b06853\" aria-label=\"Article reference 52\" data-doi=\"10.1021\/acsnano.7b06853\" 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 52\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=TaS3%20nanofibers%3A%20layered%20trichalcogenide%20for%20high-performance%20electronic%20and%20sensing%20devices&amp;journal=ACS%20Nano&amp;doi=10.1021%2Facsnano.7b06853&amp;volume=12&amp;pages=464-473&amp;publication_year=2018&amp;author=Mayorga-Martinez%2CCC\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR53\">Yalon, E. et al. Temperature-dependent thermal boundary conductance of monolayer MoS2 by Raman thermometry. ACS Appl. Mater. Interfaces 9, 43013\u201343020 (2017).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1021\/acsami.7b11641\" data-track-item_id=\"10.1021\/acsami.7b11641\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1021%2Facsami.7b11641\" aria-label=\"Article reference 53\" data-doi=\"10.1021\/acsami.7b11641\" 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 53\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Temperature-dependent%20thermal%20boundary%20conductance%20of%20monolayer%20MoS2%20by%20Raman%20thermometry&amp;journal=ACS%20Appl.%20Mater.%20Interfaces&amp;doi=10.1021%2Facsami.7b11641&amp;volume=9&amp;pages=43013-43020&amp;publication_year=2017&amp;author=Yalon%2CE\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR54\">Mak, K. F., Lui, C. H. &amp; Heinz, T. F. Measurement of the thermal conductance of the graphene\/SiO2 interface. Appl. Phys. Lett. 97, 221904 (2010).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1063\/1.3511537\" data-track-item_id=\"10.1063\/1.3511537\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1063%2F1.3511537\" aria-label=\"Article reference 54\" data-doi=\"10.1063\/1.3511537\" 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 54\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Measurement%20of%20the%20thermal%20conductance%20of%20the%20graphene%2FSiO2%20interface&amp;journal=Appl.%20Phys.%20Lett.&amp;doi=10.1063%2F1.3511537&amp;volume=97&amp;publication_year=2010&amp;author=Mak%2CKF&amp;author=Lui%2CCH&amp;author=Heinz%2CTF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n","protected":false},"excerpt":{"rendered":"Ramesh, R. et al. Roadmap on low-power electronics. APL Mater. 12, 099201 (2024). Article\u00a0 Google Scholar\u00a0 Dissanayake, K.&hellip;\n","protected":false},"author":2,"featured_media":685195,"comment_status":"","ping_status":"","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[49],"tags":[2526,26952,15536,17980,199,79],"class_list":["post-685194","post","type-post","status-publish","format-standard","has-post-thumbnail","category-physics","tag-electrical-and-electronic-engineering","tag-electrical-engineering","tag-electronic-devices","tag-electronic-properties-and-materials","tag-physics","tag-science"],"_links":{"self":[{"href":"https:\/\/www.newsbeep.com\/us\/wp-json\/wp\/v2\/posts\/685194","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.newsbeep.com\/us\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/www.newsbeep.com\/us\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/us\/wp-json\/wp\/v2\/users\/2"}],"replies":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/us\/wp-json\/wp\/v2\/comments?post=685194"}],"version-history":[{"count":0,"href":"https:\/\/www.newsbeep.com\/us\/wp-json\/wp\/v2\/posts\/685194\/revisions"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/us\/wp-json\/wp\/v2\/media\/685195"}],"wp:attachment":[{"href":"https:\/\/www.newsbeep.com\/us\/wp-json\/wp\/v2\/media?parent=685194"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/www.newsbeep.com\/us\/wp-json\/wp\/v2\/categories?post=685194"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/www.newsbeep.com\/us\/wp-json\/wp\/v2\/tags?post=685194"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}