{"id":248499,"date":"2026-01-23T21:43:09","date_gmt":"2026-01-23T21:43:09","guid":{"rendered":"https:\/\/www.newsbeep.com\/nz\/248499\/"},"modified":"2026-01-23T21:43:09","modified_gmt":"2026-01-23T21:43:09","slug":"magnon-cherenkov-effect-from-a-picosecond-strain-pulse","status":"publish","type":"post","link":"https:\/\/www.newsbeep.com\/nz\/248499\/","title":{"rendered":"Magnon-Cherenkov effect from a picosecond strain pulse"},"content":{"rendered":"<p class=\"c-article-references__text\" id=\"ref-CR1\">Flebus, B. et al. The 2024 magnonics roadmap. J. Phys. Condens. Matter 36, 363501 (2024).<\/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\/ad399c\" data-track-item_id=\"10.1088\/1361-648X\/ad399c\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1088%2F1361-648X%2Fad399c\" aria-label=\"Article reference 1\" data-doi=\"10.1088\/1361-648X\/ad399c\" 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=The%202024%20magnonics%20roadmap&amp;journal=J.%20Phys.%20Condens.%20Matter&amp;doi=10.1088%2F1361-648X%2Fad399c&amp;volume=36&amp;publication_year=2024&amp;author=Flebus%2CB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR2\">Pirro, P., Vasyuchka, V. I., Serga, A. A. &amp; Hillebrands, B. Advances in coherent magnonics. Nat. Rev. Mater. 6, 1114\u20131135 (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\/s41578-021-00332-w\" data-track-item_id=\"10.1038\/s41578-021-00332-w\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41578-021-00332-w\" aria-label=\"Article reference 2\" data-doi=\"10.1038\/s41578-021-00332-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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2021NatRM...6.1114P\" aria-label=\"ADS reference 2\" target=\"_blank\">ADS<\/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=Advances%20in%20coherent%20magnonics&amp;journal=Nat.%20Rev.%20Mater.&amp;doi=10.1038%2Fs41578-021-00332-w&amp;volume=6&amp;pages=1114-1135&amp;publication_year=2021&amp;author=Pirro%2CP&amp;author=Vasyuchka%2CVI&amp;author=Serga%2CAA&amp;author=Hillebrands%2CB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR3\">Chumak, A. V., Serga, A. A. &amp; Hillebrands, B. Magnon transistor for all-magnon data processing. Nat. Commun. 5, 4700 (2014).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1038\/ncomms5700\" data-track-item_id=\"10.1038\/ncomms5700\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fncomms5700\" aria-label=\"Article reference 3\" data-doi=\"10.1038\/ncomms5700\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2014NatCo...5.4700C\" aria-label=\"ADS reference 3\" target=\"_blank\">ADS<\/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=Magnon%20transistor%20for%20all-magnon%20data%20processing&amp;journal=Nat.%20Commun.&amp;doi=10.1038%2Fncomms5700&amp;volume=5&amp;publication_year=2014&amp;author=Chumak%2CAV&amp;author=Serga%2CAA&amp;author=Hillebrands%2CB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR4\">Mahmoud, A. et al. Introduction to spin wave computing. J. Appl. Phys. 128, 161101 (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\/5.0019328\" data-track-item_id=\"10.1063\/5.0019328\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1063%2F5.0019328\" aria-label=\"Article reference 4\" data-doi=\"10.1063\/5.0019328\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2020JAP...128p1101M\" aria-label=\"ADS reference 4\" target=\"_blank\">ADS<\/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=Introduction%20to%20spin%20wave%20computing&amp;journal=J.%20Appl.%20Phys.&amp;doi=10.1063%2F5.0019328&amp;volume=128&amp;publication_year=2020&amp;author=Mahmoud%2CA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR5\">Wang, Q. et al. A magnonic directional coupler for integrated magnonic half-adders. Nat. Electron. 3, 765\u2013774 (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\/s41928-020-00485-6\" data-track-item_id=\"10.1038\/s41928-020-00485-6\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41928-020-00485-6\" aria-label=\"Article reference 5\" data-doi=\"10.1038\/s41928-020-00485-6\" 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=A%20magnonic%20directional%20coupler%20for%20integrated%20magnonic%20half-adders&amp;journal=Nat.%20Electron.&amp;doi=10.1038%2Fs41928-020-00485-6&amp;volume=3&amp;pages=765-774&amp;publication_year=2020&amp;author=Wang%2CQ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR6\">K\u00f6rber, L. et al. Pattern recognition in reciprocal space with a magnon-scattering reservoir. Nat. Commun. 14, 3954 (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\/s41467-023-39452-y\" data-track-item_id=\"10.1038\/s41467-023-39452-y\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41467-023-39452-y\" aria-label=\"Article reference 6\" data-doi=\"10.1038\/s41467-023-39452-y\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2023NatCo..14.3954K\" aria-label=\"ADS reference 6\" target=\"_blank\">ADS<\/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=Pattern%20recognition%20in%20reciprocal%20space%20with%20a%20magnon-scattering%20reservoir&amp;journal=Nat.%20Commun.&amp;doi=10.1038%2Fs41467-023-39452-y&amp;volume=14&amp;publication_year=2023&amp;author=K%C3%B6rber%2CL\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR7\">Wang, C. et al. Enhancement of magnonic frequency combs by exceptional points. Nat. Phys. 20, 1139\u20131144 (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\/s41567-024-02478-0\" data-track-item_id=\"10.1038\/s41567-024-02478-0\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41567-024-02478-0\" aria-label=\"Article reference 7\" data-doi=\"10.1038\/s41567-024-02478-0\" 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=Enhancement%20of%20magnonic%20frequency%20combs%20by%20exceptional%20points&amp;journal=Nat.%20Phys.&amp;doi=10.1038%2Fs41567-024-02478-0&amp;volume=20&amp;pages=1139-1144&amp;publication_year=2024&amp;author=Wang%2CC\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR8\">Chumak, A. V. et al. Advances in magnetics roadmap on spin-wave computing. IEEE Trans. Magn. 58, 0800172 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1109\/TMAG.2022.3149664\" data-track-item_id=\"10.1109\/TMAG.2022.3149664\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1109%2FTMAG.2022.3149664\" aria-label=\"Article reference 8\" data-doi=\"10.1109\/TMAG.2022.3149664\" 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=Advances%20in%20magnetics%20roadmap%20on%20spin-wave%20computing&amp;journal=IEEE%20Trans.%20Magn.&amp;doi=10.1109%2FTMAG.2022.3149664&amp;volume=58&amp;publication_year=2022&amp;author=Chumak%2CAV\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR9\">Girardi, D. et al. Three-dimensional spin-wave dynamics, localization and interference in a synthetic antiferromagnet. Nat. Commun. 15, 3057 (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\/s41467-024-47339-9\" data-track-item_id=\"10.1038\/s41467-024-47339-9\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41467-024-47339-9\" aria-label=\"Article reference 9\" data-doi=\"10.1038\/s41467-024-47339-9\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2024NatCo..15.3057G\" aria-label=\"ADS reference 9\" target=\"_blank\">ADS<\/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=Three-dimensional%20spin-wave%20dynamics%2C%20localization%20and%20interference%20in%20a%20synthetic%20antiferromagnet&amp;journal=Nat.%20Commun.&amp;doi=10.1038%2Fs41467-024-47339-9&amp;volume=15&amp;publication_year=2024&amp;author=Girardi%2CD\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR10\">Wintz, S. et al. Magnetic vortex cores as tunable spin-wave emitters. Nat. Nanotechnol. 11, 948\u2013953 (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.2016.117\" data-track-item_id=\"10.1038\/nnano.2016.117\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fnnano.2016.117\" aria-label=\"Article reference 10\" data-doi=\"10.1038\/nnano.2016.117\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2016NatNa..11..948W\" aria-label=\"ADS reference 10\" target=\"_blank\">ADS<\/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=Magnetic%20vortex%20cores%20as%20tunable%20spin-wave%20emitters&amp;journal=Nat.%20Nanotechnol.&amp;doi=10.1038%2Fnnano.2016.117&amp;volume=11&amp;pages=948-953&amp;publication_year=2016&amp;author=Wintz%2CS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR11\">Yu, H. et al. Approaching soft X-ray wavelengths in nanomagnet-based microwave technology. Nat. Commun. 7, 11255 (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\/ncomms11255\" data-track-item_id=\"10.1038\/ncomms11255\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fncomms11255\" aria-label=\"Article reference 11\" data-doi=\"10.1038\/ncomms11255\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2016NatCo...711255Y\" aria-label=\"ADS reference 11\" target=\"_blank\">ADS<\/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=Approaching%20soft%20X-ray%20wavelengths%20in%20nanomagnet-based%20microwave%20technology&amp;journal=Nat.%20Commun.&amp;doi=10.1038%2Fncomms11255&amp;volume=7&amp;publication_year=2016&amp;author=Yu%2CH\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR12\">Wang, H. et al. Reconfigurable nonreciprocal excitation of propagating exchange spin waves in perpendicularly magnetized yttrium iron garnet thin films. Phys. Rev. B 108, 134403 (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\/PhysRevB.108.134403\" data-track-item_id=\"10.1103\/PhysRevB.108.134403\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.108.134403\" aria-label=\"Article reference 12\" data-doi=\"10.1103\/PhysRevB.108.134403\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2023PhRvB.108m4403W\" aria-label=\"ADS reference 12\" target=\"_blank\">ADS<\/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=Reconfigurable%20nonreciprocal%20excitation%20of%20propagating%20exchange%20spin%20waves%20in%20perpendicularly%20magnetized%20yttrium%20iron%20garnet%20thin%20films&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.108.134403&amp;volume=108&amp;publication_year=2023&amp;author=Wang%2CH\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR13\">Liu, C. et al. Long-distance propagation of short-wavelength spin waves. Nat. Commun. 9, 738 (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\/s41467-018-03199-8\" data-track-item_id=\"10.1038\/s41467-018-03199-8\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41467-018-03199-8\" aria-label=\"Article reference 13\" data-doi=\"10.1038\/s41467-018-03199-8\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2018NatCo...9..738L\" aria-label=\"ADS reference 13\" target=\"_blank\">ADS<\/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=Long-distance%20propagation%20of%20short-wavelength%20spin%20waves&amp;journal=Nat.%20Commun.&amp;doi=10.1038%2Fs41467-018-03199-8&amp;volume=9&amp;publication_year=2018&amp;author=Liu%2CC\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR14\">Talapatra, A. et al. Imaging of short-wavelength spin waves in a nanometer-thick YIG\/Co bilayer. Appl. Phys. Lett. 122, 202404 (2023).<\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR15\">Wang, Q. et al. Deeply nonlinear excitation of self-normalized short spin waves. Sci. Adv. 9, eadg4609 (2023).<\/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.adg4609\" data-track-item_id=\"10.1126\/sciadv.adg4609\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1126%2Fsciadv.adg4609\" aria-label=\"Article reference 15\" data-doi=\"10.1126\/sciadv.adg4609\" 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=Deeply%20nonlinear%20excitation%20of%20self-normalized%20short%20spin%20waves&amp;journal=Sci.%20Adv.&amp;doi=10.1126%2Fsciadv.adg4609&amp;volume=9&amp;publication_year=2023&amp;author=Wang%2CQ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR16\">Nikolaev, K., Mohapatra, B. D., Schmidt, G., Demokritov, S. &amp; Demidov, V. Spatially extended nonlinear generation of short-wavelength spin waves in yttrium iron garnet nanowaveguides. Phys. Rev. Appl. 22, 044083 (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\/PhysRevApplied.22.044083\" data-track-item_id=\"10.1103\/PhysRevApplied.22.044083\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevApplied.22.044083\" aria-label=\"Article reference 16\" data-doi=\"10.1103\/PhysRevApplied.22.044083\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2024PhRvP..22d4083N\" aria-label=\"ADS reference 16\" target=\"_blank\">ADS<\/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=Spatially%20extended%20nonlinear%20generation%20of%20short-wavelength%20spin%20waves%20in%20yttrium%20iron%20garnet%20nanowaveguides&amp;journal=Phys.%20Rev.%20Appl.&amp;doi=10.1103%2FPhysRevApplied.22.044083&amp;volume=22&amp;publication_year=2024&amp;author=Nikolaev%2CK&amp;author=Mohapatra%2CBD&amp;author=Schmidt%2CG&amp;author=Demokritov%2CS&amp;author=Demidov%2CV\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR17\">Ginzburg, V. L. Radiation by uniformly moving sources (Vavilov-Cherenkov effect, transition radiation, and other phenomena). Phys. Usp. 39, 973\u2013982 (1996).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1070\/PU1996v039n10ABEH000171\" data-track-item_id=\"10.1070\/PU1996v039n10ABEH000171\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1070%2FPU1996v039n10ABEH000171\" aria-label=\"Article reference 17\" data-doi=\"10.1070\/PU1996v039n10ABEH000171\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=1996PhyU...39..973G\" aria-label=\"ADS reference 17\" target=\"_blank\">ADS<\/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=Radiation%20by%20uniformly%20moving%20sources%20%28Vavilov-Cherenkov%20effect%2C%20transition%20radiation%2C%20and%20other%20phenomena%29&amp;journal=Phys.%20Usp.&amp;doi=10.1070%2FPU1996v039n10ABEH000171&amp;volume=39&amp;pages=973-982&amp;publication_year=1996&amp;author=Ginzburg%2CVL\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR18\">\u010cerenkov, P. A. Visible radiation produced by electrons moving in a medium with velocities exceeding that of light. Phys. Rev. 52, 378\u2013379 (1937).<\/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.52.378\" data-track-item_id=\"10.1103\/PhysRev.52.378\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRev.52.378\" aria-label=\"Article reference 18\" data-doi=\"10.1103\/PhysRev.52.378\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=1937PhRv...52..378C\" aria-label=\"ADS reference 18\" target=\"_blank\">ADS<\/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=Visible%20radiation%20produced%20by%20electrons%20moving%20in%20a%20medium%20with%20velocities%20exceeding%20that%20of%20light&amp;journal=Phys.%20Rev.&amp;doi=10.1103%2FPhysRev.52.378&amp;volume=52&amp;pages=378-379&amp;publication_year=1937&amp;author=%C4%8Cerenkov%2CPA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR19\">Liu, F. et al. Integrated Cherenkov radiation emitter eliminating the electron velocity threshold. Nat. Photon. 11, 289\u2013292 (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\/nphoton.2017.45\" data-track-item_id=\"10.1038\/nphoton.2017.45\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fnphoton.2017.45\" aria-label=\"Article reference 19\" data-doi=\"10.1038\/nphoton.2017.45\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2017NaPho..11..289L\" aria-label=\"ADS reference 19\" target=\"_blank\">ADS<\/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=Integrated%20Cherenkov%20radiation%20emitter%20eliminating%20the%20electron%20velocity%20threshold&amp;journal=Nat.%20Photon.&amp;doi=10.1038%2Fnphoton.2017.45&amp;volume=11&amp;pages=289-292&amp;publication_year=2017&amp;author=Liu%2CF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR20\">Datta, T. Cherenkov magnon excitations by a sub-relativistic magnetic monopole. Phys. Lett. A 103, 243\u2013246 (1984).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1016\/0375-9601(84)90115-4\" data-track-item_id=\"10.1016\/0375-9601(84)90115-4\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2F0375-9601%2884%2990115-4\" aria-label=\"Article reference 20\" data-doi=\"10.1016\/0375-9601(84)90115-4\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=1984PhLA..103..243D\" aria-label=\"ADS reference 20\" target=\"_blank\">ADS<\/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=Cherenkov%20magnon%20excitations%20by%20a%20sub-relativistic%20magnetic%20monopole&amp;journal=Phys.%20Lett.%20A&amp;doi=10.1016%2F0375-9601%2884%2990115-4&amp;volume=103&amp;pages=243-246&amp;publication_year=1984&amp;author=Datta%2CT\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR21\">Vorob\u2019ev, P. V. &amp; Kolokolov, I. V. Cherenkov emission of magnons by a slow monopole. JETP Lett. 67, 910 (1998).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1134\/1.567766\" data-track-item_id=\"10.1134\/1.567766\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1134%2F1.567766\" aria-label=\"Article reference 21\" data-doi=\"10.1134\/1.567766\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=1998JETPL..67..910V\" aria-label=\"ADS reference 21\" target=\"_blank\">ADS<\/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=Cherenkov%20emission%20of%20magnons%20by%20a%20slow%20monopole&amp;journal=JETP%20Lett.&amp;doi=10.1134%2F1.567766&amp;volume=67&amp;publication_year=1998&amp;author=Vorob%E2%80%99ev%2CPV&amp;author=Kolokolov%2CIV\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR22\">Kaminer, I. et al. Efficient plasmonic emission by the quantum \u010cerenkov effect from hot carriers in graphene. Nat. Commun. 7, ncomms11880 (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\/ncomms11880\" data-track-item_id=\"10.1038\/ncomms11880\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fncomms11880\" aria-label=\"Article reference 22\" data-doi=\"10.1038\/ncomms11880\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2016NatCo...711880K\" aria-label=\"ADS reference 22\" target=\"_blank\">ADS<\/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=Efficient%20plasmonic%20emission%20by%20the%20quantum%20%C4%8Cerenkov%20effect%20from%20hot%20carriers%20in%20graphene&amp;journal=Nat.%20Commun.&amp;doi=10.1038%2Fncomms11880&amp;volume=7&amp;publication_year=2016&amp;author=Kaminer%2CI\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR23\">Pogue, B. W. et al. Maps of in vivo oxygen pressure with submillimetre resolution and nanomolar sensitivity enabled by Cherenkov-excited luminescence scanned imaging. Nat. Biomed. Eng. 2, 254\u2013264 (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\/s41551-018-0220-3\" data-track-item_id=\"10.1038\/s41551-018-0220-3\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41551-018-0220-3\" aria-label=\"Article reference 23\" data-doi=\"10.1038\/s41551-018-0220-3\" 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=Maps%20of%20in%20vivo%20oxygen%20pressure%20with%20submillimetre%20resolution%20and%20nanomolar%20sensitivity%20enabled%20by%20Cherenkov-excited%20luminescence%20scanned%20imaging&amp;journal=Nat.%20Biomed.%20Eng.&amp;doi=10.1038%2Fs41551-018-0220-3&amp;volume=2&amp;pages=254-264&amp;publication_year=2018&amp;author=Pogue%2CBW\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR24\">Yan, M., K\u00e1kay, A., Andreas, C. &amp; Hertel, R. Spin-Cherenkov effect and magnonic Mach cones. Phys. Rev. B 88, 220412 (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.88.220412\" data-track-item_id=\"10.1103\/PhysRevB.88.220412\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.88.220412\" aria-label=\"Article reference 24\" data-doi=\"10.1103\/PhysRevB.88.220412\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2013PhRvB..88v0412Y\" aria-label=\"ADS reference 24\" target=\"_blank\">ADS<\/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=Spin-Cherenkov%20effect%20and%20magnonic%20Mach%20cones&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.88.220412&amp;volume=88&amp;publication_year=2013&amp;author=Yan%2CM&amp;author=K%C3%A1kay%2CA&amp;author=Andreas%2CC&amp;author=Hertel%2CR\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR25\">Khokhlov, N., Filatov, I. &amp; Kalashnikova, A. Spatial asymmetry of optically excited spin waves in anisotropic ferromagnetic film. J. Magn. Magn. Mater. 589, 171514 (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.jmmm.2023.171514\" data-track-item_id=\"10.1016\/j.jmmm.2023.171514\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2Fj.jmmm.2023.171514\" aria-label=\"Article reference 25\" data-doi=\"10.1016\/j.jmmm.2023.171514\" 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=Spatial%20asymmetry%20of%20optically%20excited%20spin%20waves%20in%20anisotropic%20ferromagnetic%20film&amp;journal=J.%20Magn.%20Magn.%20Mater.&amp;doi=10.1016%2Fj.jmmm.2023.171514&amp;volume=589&amp;publication_year=2024&amp;author=Khokhlov%2CN&amp;author=Filatov%2CI&amp;author=Kalashnikova%2CA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR26\">Satoh, T. et al. Directional control of spin-wave emission by spatially shaped light. Nat. Photon. 6, 662\u2013666 (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\/nphoton.2012.218\" data-track-item_id=\"10.1038\/nphoton.2012.218\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fnphoton.2012.218\" aria-label=\"Article reference 26\" data-doi=\"10.1038\/nphoton.2012.218\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2012NaPho...6..662S\" aria-label=\"ADS reference 26\" target=\"_blank\">ADS<\/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=Directional%20control%20of%20spin-wave%20emission%20by%20spatially%20shaped%20light&amp;journal=Nat.%20Photon.&amp;doi=10.1038%2Fnphoton.2012.218&amp;volume=6&amp;pages=662-666&amp;publication_year=2012&amp;author=Satoh%2CT\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR27\">Dobrovolskiy, O. V. et al. Moving Abrikosov vortex lattices generate sub-40-nm magnons. Nat. Nanotechnol. <a href=\"https:\/\/doi.org\/10.1038\/s41565-025-02024-w\" data-track=\"click_references\" data-track-action=\"external reference\" data-track-value=\"external reference\" data-track-label=\"10.1038\/s41565-025-02024-w\" rel=\"nofollow noopener\" target=\"_blank\">https:\/\/doi.org\/10.1038\/s41565-025-02024-w<\/a> (2025).<\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR28\">Yan, M. et al. Fast domain wall dynamics in magnetic nanotubes: suppression of Walker breakdown and Cherenkov-like spin wave emission. Appl. Phys. Lett. 99, 122505 (2011).<\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR29\">Hertel, R. Ultrafast domain wall dynamics in magnetic nanotubes and nanowires. J. Phys. Condens. Matter 28, 483002 (2016).<\/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\/28\/48\/483002\" data-track-item_id=\"10.1088\/0953-8984\/28\/48\/483002\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1088%2F0953-8984%2F28%2F48%2F483002\" aria-label=\"Article reference 29\" data-doi=\"10.1088\/0953-8984\/28\/48\/483002\" 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=Ultrafast%20domain%20wall%20dynamics%20in%20magnetic%20nanotubes%20and%20nanowires&amp;journal=J.%20Phys.%20Condens.%20Matter&amp;doi=10.1088%2F0953-8984%2F28%2F48%2F483002&amp;volume=28&amp;publication_year=2016&amp;author=Hertel%2CR\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR30\">Kimel, A. V., Kalashnikova, A. M., Pogrebna, A. &amp; Zvezdin, A. K. Fundamentals and perspectives of ultrafast photoferroic recording. Phys. Rep. 852, 1\u201346 (2020).<\/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.physrep.2020.01.004\" data-track-item_id=\"10.1016\/j.physrep.2020.01.004\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2Fj.physrep.2020.01.004\" aria-label=\"Article reference 30\" data-doi=\"10.1016\/j.physrep.2020.01.004\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2020PhR...852....1K\" aria-label=\"ADS reference 30\" target=\"_blank\">ADS<\/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=Fundamentals%20and%20perspectives%20of%20ultrafast%20photoferroic%20recording&amp;journal=Phys.%20Rep.&amp;doi=10.1016%2Fj.physrep.2020.01.004&amp;volume=852&amp;pages=1-46&amp;publication_year=2020&amp;author=Kimel%2CAV&amp;author=Kalashnikova%2CAM&amp;author=Pogrebna%2CA&amp;author=Zvezdin%2CAK\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR31\">Matsuda, O., Larciprete, M. C., Voti, R. L. &amp; Wright, O. B. Fundamentals of picosecond laser ultrasonics. Ultrasonics 56, 3\u201320 (2015).<\/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.ultras.2014.06.005\" data-track-item_id=\"10.1016\/j.ultras.2014.06.005\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2Fj.ultras.2014.06.005\" aria-label=\"Article reference 31\" data-doi=\"10.1016\/j.ultras.2014.06.005\" 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=Fundamentals%20of%20picosecond%20laser%20ultrasonics&amp;journal=Ultrasonics&amp;doi=10.1016%2Fj.ultras.2014.06.005&amp;volume=56&amp;pages=3-20&amp;publication_year=2015&amp;author=Matsuda%2CO&amp;author=Larciprete%2CMC&amp;author=Voti%2CRL&amp;author=Wright%2COB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR32\">Hioki, T., Hashimoto, Y. &amp; Saitoh, E. Coherent oscillation between phonons and magnons. Commun. Phys. 5, 115 (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\/s42005-022-00888-1\" data-track-item_id=\"10.1038\/s42005-022-00888-1\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs42005-022-00888-1\" aria-label=\"Article reference 32\" data-doi=\"10.1038\/s42005-022-00888-1\" 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=Coherent%20oscillation%20between%20phonons%20and%20magnons&amp;journal=Commun.%20Phys.&amp;doi=10.1038%2Fs42005-022-00888-1&amp;volume=5&amp;publication_year=2022&amp;author=Hioki%2CT&amp;author=Hashimoto%2CY&amp;author=Saitoh%2CE\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR33\">Kitaeva, V. F., Zharikov, E. V. &amp; Chistyi, I. L. The properties of crystals with garnet structure. Phys. Status Solidi A 92, 475\u2013488 (1985).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1002\/pssa.2210920217\" data-track-item_id=\"10.1002\/pssa.2210920217\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1002%2Fpssa.2210920217\" aria-label=\"Article reference 33\" data-doi=\"10.1002\/pssa.2210920217\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=1985PSSAR..92..475K\" aria-label=\"ADS reference 33\" target=\"_blank\">ADS<\/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=The%20properties%20of%20crystals%20with%20garnet%20structure&amp;journal=Phys.%20Status%20Solidi%20A&amp;doi=10.1002%2Fpssa.2210920217&amp;volume=92&amp;pages=475-488&amp;publication_year=1985&amp;author=Kitaeva%2CVF&amp;author=Zharikov%2CEV&amp;author=Chistyi%2CIL\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR34\">Scherbakov, A. V. et al. Coherent magnetization precession in ferromagnetic (Ga,Mn)As induced by picosecond acoustic pulses. Phys. Rev. Lett. 105, 117204 (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\/PhysRevLett.105.117204\" data-track-item_id=\"10.1103\/PhysRevLett.105.117204\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevLett.105.117204\" aria-label=\"Article reference 34\" data-doi=\"10.1103\/PhysRevLett.105.117204\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2010PhRvL.105k7204S\" aria-label=\"ADS reference 34\" target=\"_blank\">ADS<\/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=Coherent%20magnetization%20precession%20in%20ferromagnetic%20%28Ga%2CMn%29As%20induced%20by%20picosecond%20acoustic%20pulses&amp;journal=Phys.%20Rev.%20Lett.&amp;doi=10.1103%2FPhysRevLett.105.117204&amp;volume=105&amp;publication_year=2010&amp;author=Scherbakov%2CAV\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR35\">Deb, M. et al. Femtosecond laser-excitation-driven high frequency standing spin waves in nanoscale dielectric thin films of iron garnets. Phys. Rev. Lett. 123, 027202 (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.123.027202\" data-track-item_id=\"10.1103\/PhysRevLett.123.027202\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevLett.123.027202\" aria-label=\"Article reference 35\" data-doi=\"10.1103\/PhysRevLett.123.027202\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2019PhRvL.123b7202D\" aria-label=\"ADS reference 35\" target=\"_blank\">ADS<\/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=Femtosecond%20laser-excitation-driven%20high%20frequency%20standing%20spin%20waves%20in%20nanoscale%20dielectric%20thin%20films%20of%20iron%20garnets&amp;journal=Phys.%20Rev.%20Lett.&amp;doi=10.1103%2FPhysRevLett.123.027202&amp;volume=123&amp;publication_year=2019&amp;author=Deb%2CM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR36\">Shelukhin, L. A. et al. Ultrafast laser-induced changes of the magnetic anisotropy in a low-symmetry iron garnet film. Phys. Rev. B 97, 014422 (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.97.014422\" data-track-item_id=\"10.1103\/PhysRevB.97.014422\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.97.014422\" aria-label=\"Article reference 36\" data-doi=\"10.1103\/PhysRevB.97.014422\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2018PhRvB..97a4422S\" aria-label=\"ADS reference 36\" target=\"_blank\">ADS<\/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=Ultrafast%20laser-induced%20changes%20of%20the%20magnetic%20anisotropy%20in%20a%20low-symmetry%20iron%20garnet%20film&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.97.014422&amp;volume=97&amp;publication_year=2018&amp;author=Shelukhin%2CLA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR37\">Gurevich, A. &amp; Melkov, G. Magnetization Oscillations and Waves (CRC Press, 1996).<\/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 37\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Magnetization%20Oscillations%20and%20Waves&amp;publication_year=1996&amp;author=Gurevich%2CA&amp;author=Melkov%2CG\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR38\">Kats, V. N. et al. Ultrafast changes of magnetic anisotropy driven by laser-generated coherent and noncoherent phonons in metallic films. Phys. Rev. B 93, 214422 (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\/PhysRevB.93.214422\" data-track-item_id=\"10.1103\/PhysRevB.93.214422\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.93.214422\" aria-label=\"Article reference 38\" data-doi=\"10.1103\/PhysRevB.93.214422\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2016PhRvB..93u4422K\" aria-label=\"ADS reference 38\" target=\"_blank\">ADS<\/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=Ultrafast%20changes%20of%20magnetic%20anisotropy%20driven%20by%20laser-generated%20coherent%20and%20noncoherent%20phonons%20in%20metallic%20films&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.93.214422&amp;volume=93&amp;publication_year=2016&amp;author=Kats%2CVN\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR39\">Wojtowicz, P. J. High temperature susceptibility of garnets: exchange interactions in YIG and LuIG. J. Appl. Phys. 33, 1257\u20131258 (1962).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1063\/1.1728680\" data-track-item_id=\"10.1063\/1.1728680\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1063%2F1.1728680\" aria-label=\"Article reference 39\" data-doi=\"10.1063\/1.1728680\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=1962JAP....33.1257W\" aria-label=\"ADS reference 39\" target=\"_blank\">ADS<\/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=High%20temperature%20susceptibility%20of%20garnets%3A%20exchange%20interactions%20in%20YIG%20and%20LuIG&amp;journal=J.%20Appl.%20Phys.&amp;doi=10.1063%2F1.1728680&amp;volume=33&amp;pages=1257-1258&amp;publication_year=1962&amp;author=Wojtowicz%2CPJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR40\">Zeuschner, S. P. et al. Standing spin wave excitation in Bi:YIG films via temperature-induced anisotropy changes and magneto-elastic coupling. Phys. Rev. B 106, 134401 (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.106.134401\" data-track-item_id=\"10.1103\/PhysRevB.106.134401\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.106.134401\" aria-label=\"Article reference 40\" data-doi=\"10.1103\/PhysRevB.106.134401\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2022PhRvB.106m4401Z\" aria-label=\"ADS reference 40\" target=\"_blank\">ADS<\/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=Standing%20spin%20wave%20excitation%20in%20Bi%3AYIG%20films%20via%20temperature-induced%20anisotropy%20changes%20and%20magneto-elastic%20coupling&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.106.134401&amp;volume=106&amp;publication_year=2022&amp;author=Zeuschner%2CSP\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR41\">Azovtsev, A. V. &amp; Pertsev, N. A. Antiferromagnetic standing spin waves generated in NiO thin films by short strain pulses. Phys. Rev. B 110, 144430 (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.110.144430\" data-track-item_id=\"10.1103\/PhysRevB.110.144430\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.110.144430\" aria-label=\"Article reference 41\" data-doi=\"10.1103\/PhysRevB.110.144430\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2024PhRvB.110n4430A\" aria-label=\"ADS reference 41\" target=\"_blank\">ADS<\/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=Antiferromagnetic%20standing%20spin%20waves%20generated%20in%20NiO%20thin%20films%20by%20short%20strain%20pulses&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.110.144430&amp;volume=110&amp;publication_year=2024&amp;author=Azovtsev%2CAV&amp;author=Pertsev%2CNA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR42\">Akyol, M. et al. Structural, magnetic and optical properties of Au\/YIG, YIG\/Au and Au\/YIG\/Au multilayer thin film stacks. J. Magn. Magn. Mater. 493, 165704 (2020).<\/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.jmmm.2019.165704\" data-track-item_id=\"10.1016\/j.jmmm.2019.165704\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2Fj.jmmm.2019.165704\" aria-label=\"Article reference 42\" data-doi=\"10.1016\/j.jmmm.2019.165704\" 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=Structural%2C%20magnetic%20and%20optical%20properties%20of%20Au%2FYIG%2C%20YIG%2FAu%20and%20Au%2FYIG%2FAu%20multilayer%20thin%20film%20stacks&amp;journal=J.%20Magn.%20Magn.%20Mater.&amp;doi=10.1016%2Fj.jmmm.2019.165704&amp;volume=493&amp;publication_year=2020&amp;author=Akyol%2CM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR43\">Dongquoc, V. et al. Extraordinary enhancement of magneto-optical Faraday rotation angle in Bi-YIG\/Pt\/glass prepared by metal organic decomposition method. Surf. Interfaces 51, 104652 (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.surfin.2024.104652\" data-track-item_id=\"10.1016\/j.surfin.2024.104652\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2Fj.surfin.2024.104652\" aria-label=\"Article reference 43\" data-doi=\"10.1016\/j.surfin.2024.104652\" 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=Extraordinary%20enhancement%20of%20magneto-optical%20Faraday%20rotation%20angle%20in%20Bi-YIG%2FPt%2Fglass%20prepared%20by%20metal%20organic%20decomposition%20method&amp;journal=Surf.%20Interfaces&amp;doi=10.1016%2Fj.surfin.2024.104652&amp;volume=51&amp;publication_year=2024&amp;author=Dongquoc%2CV\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR44\">Gerevenkov, P. I. et al. Three regimes of a picosecond magnetoacoustics in ferromagnetic structures. Preprint at <a href=\"https:\/\/arxiv.org\/abs\/2505.09579\" data-track=\"click_references\" data-track-action=\"external reference\" data-track-value=\"external reference\" data-track-label=\"https:\/\/arxiv.org\/abs\/2505.09579\" rel=\"nofollow noopener\" target=\"_blank\">https:\/\/arxiv.org\/abs\/2505.09579<\/a> (2025).<\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR45\">Zeuschner, S. P. et al. Tracking picosecond strain pulses in heterostructures that exhibit giant magnetostriction. Struct. Dyn. 6, 024302 (2019).<\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR46\">Yaremkevich, D. D. et al. On-chip phonon-magnon reservoir for neuromorphic computing. Nat. Commun. 14, 8296 (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\/s41467-023-43891-y\" data-track-item_id=\"10.1038\/s41467-023-43891-y\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41467-023-43891-y\" aria-label=\"Article reference 46\" data-doi=\"10.1038\/s41467-023-43891-y\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2023NatCo..14.8296Y\" aria-label=\"ADS reference 46\" target=\"_blank\">ADS<\/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=On-chip%20phonon-magnon%20reservoir%20for%20neuromorphic%20computing&amp;journal=Nat.%20Commun.&amp;doi=10.1038%2Fs41467-023-43891-y&amp;volume=14&amp;publication_year=2023&amp;author=Yaremkevich%2CDD\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR47\">Matsumoto, K. et al. Observation of evanescent spin waves in the magnetic dipole regime. Phys. Rev. B 101, 184407 (2020).<\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR48\">Philippe, G., Moalic, M. &amp; K\u0142os, J. W. Unidirectional spin wave emission by traveling pair of magnetic field profiles. J. Magn. Magn. Mater. 587, 171359 (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.jmmm.2023.171359\" data-track-item_id=\"10.1016\/j.jmmm.2023.171359\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2Fj.jmmm.2023.171359\" aria-label=\"Article reference 48\" data-doi=\"10.1016\/j.jmmm.2023.171359\" 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=Unidirectional%20spin%20wave%20emission%20by%20traveling%20pair%20of%20magnetic%20field%20profiles&amp;journal=J.%20Magn.%20Magn.%20Mater.&amp;doi=10.1016%2Fj.jmmm.2023.171359&amp;volume=587&amp;publication_year=2023&amp;author=Philippe%2CG&amp;author=Moalic%2CM&amp;author=K%C5%82os%2CJW\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR49\">Chumak, A. V., Serga, A. A. &amp; Hillebrands, B. Magnonic crystals for data processing. J. Phys. D 50, 244001 (2017).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1088\/1361-6463\/aa6a65\" data-track-item_id=\"10.1088\/1361-6463\/aa6a65\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1088%2F1361-6463%2Faa6a65\" aria-label=\"Article reference 49\" data-doi=\"10.1088\/1361-6463\/aa6a65\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2017JPhD...50x4001C\" aria-label=\"ADS reference 49\" target=\"_blank\">ADS<\/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=Magnonic%20crystals%20for%20data%20processing&amp;journal=J.%20Phys.%20D&amp;doi=10.1088%2F1361-6463%2Faa6a65&amp;volume=50&amp;publication_year=2017&amp;author=Chumak%2CAV&amp;author=Serga%2CAA&amp;author=Hillebrands%2CB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR50\">Liao, L., Liu, J., Puebla, J., Shao, Q. &amp; Otani, Y. Hybrid magnon-phonon crystals. npj Spintron. 2, 47 (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\/s44306-024-00052-1\" data-track-item_id=\"10.1038\/s44306-024-00052-1\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs44306-024-00052-1\" aria-label=\"Article reference 50\" data-doi=\"10.1038\/s44306-024-00052-1\" 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=Hybrid%20magnon-phonon%20crystals&amp;journal=npj%20Spintron.&amp;doi=10.1038%2Fs44306-024-00052-1&amp;volume=2&amp;publication_year=2024&amp;author=Liao%2CL&amp;author=Liu%2CJ&amp;author=Puebla%2CJ&amp;author=Shao%2CQ&amp;author=Otani%2CY\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR51\">Luo, C., Ibanescu, M., Johnson, S. G. &amp; Joannopoulos, J. D. Cerenkov radiation in photonic crystals. Science 299, 368\u2013371 (2003).<\/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.1079549\" data-track-item_id=\"10.1126\/science.1079549\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1126%2Fscience.1079549\" aria-label=\"Article reference 51\" data-doi=\"10.1126\/science.1079549\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2003Sci...299..368L\" aria-label=\"ADS reference 51\" target=\"_blank\">ADS<\/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=Cerenkov%20radiation%20in%20photonic%20crystals&amp;journal=Science&amp;doi=10.1126%2Fscience.1079549&amp;volume=299&amp;pages=368-371&amp;publication_year=2003&amp;author=Luo%2CC&amp;author=Ibanescu%2CM&amp;author=Johnson%2CSG&amp;author=Joannopoulos%2CJD\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR52\">van Capel, P., P\u00e9ronne, E. &amp; Dijkhuis, J. Nonlinear ultrafast acoustics at the nano scale. Ultrasonics 56, 36\u201351 (2015).<\/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.ultras.2014.09.021\" data-track-item_id=\"10.1016\/j.ultras.2014.09.021\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2Fj.ultras.2014.09.021\" aria-label=\"Article reference 52\" data-doi=\"10.1016\/j.ultras.2014.09.021\" 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=Nonlinear%20ultrafast%20acoustics%20at%20the%20nano%20scale&amp;journal=Ultrasonics&amp;doi=10.1016%2Fj.ultras.2014.09.021&amp;volume=56&amp;pages=36-51&amp;publication_year=2015&amp;author=Capel%2CP&amp;author=P%C3%A9ronne%2CE&amp;author=Dijkhuis%2CJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR53\">Zhuang, S., Meisenheimer, P. B., Heron, J. &amp; Hu, J.-M. A narrowband spintronic terahertz emitter based on magnetoelastic heterostructures. ACS Appl. Mater. Interfaces 13, 48997\u201349006 (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\/acsami.1c13461\" data-track-item_id=\"10.1021\/acsami.1c13461\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1021%2Facsami.1c13461\" aria-label=\"Article reference 53\" data-doi=\"10.1021\/acsami.1c13461\" 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=A%20narrowband%20spintronic%20terahertz%20emitter%20based%20on%20magnetoelastic%20heterostructures&amp;journal=ACS%20Appl.%20Mater.%20Interfaces&amp;doi=10.1021%2Facsami.1c13461&amp;volume=13&amp;pages=48997-49006&amp;publication_year=2021&amp;author=Zhuang%2CS&amp;author=Meisenheimer%2CPB&amp;author=Heron%2CJ&amp;author=Hu%2CJ-M\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR54\">Doormann, V., Krumme, J. P., Klages, C. P. &amp; Erman, M. Measurement of the refractive index and optical absorption spectra of epitaxial bismuth substituted yttrium iron garnet films at UV to near-IR wavelengths. Appl. Phys. A 34, 223\u2013230 (1984).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"noopener nofollow\" data-track-label=\"10.1007\/BF00616576\" data-track-item_id=\"10.1007\/BF00616576\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/link.springer.com\/doi\/10.1007\/BF00616576\" aria-label=\"Article reference 54\" data-doi=\"10.1007\/BF00616576\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=1984ApPhA..34..223D\" aria-label=\"ADS reference 54\" target=\"_blank\">ADS<\/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%20refractive%20index%20and%20optical%20absorption%20spectra%20of%20epitaxial%20bismuth%20substituted%20yttrium%20iron%20garnet%20films%20at%20UV%20to%20near-IR%20wavelengths&amp;journal=Appl.%20Phys.%20A&amp;doi=10.1007%2FBF00616576&amp;volume=34&amp;pages=223-230&amp;publication_year=1984&amp;author=Doormann%2CV&amp;author=Krumme%2CJP&amp;author=Klages%2CCP&amp;author=Erman%2CM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR55\">Hortensius, J. R. et al. Coherent spin-wave transport in an antiferromagnet. Nat. Phys. 17, 1001\u20131006 (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\/s41567-021-01290-4\" data-track-item_id=\"10.1038\/s41567-021-01290-4\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1038%2Fs41567-021-01290-4\" aria-label=\"Article reference 55\" data-doi=\"10.1038\/s41567-021-01290-4\" 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 55\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Coherent%20spin-wave%20transport%20in%20an%20antiferromagnet&amp;journal=Nat.%20Phys.&amp;doi=10.1038%2Fs41567-021-01290-4&amp;volume=17&amp;pages=1001-1006&amp;publication_year=2021&amp;author=Hortensius%2CJR\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR56\">Clark, A. E., DeSavage, B., Coleman, W., Callen, E. R. &amp; Callen, H. B. Saturation magnetostriction of single-crystal YIG. J. Appl. Phys. 34, 1296\u20131297 (1963).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"10.1063\/1.1729480\" data-track-item_id=\"10.1063\/1.1729480\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1063%2F1.1729480\" aria-label=\"Article reference 56\" data-doi=\"10.1063\/1.1729480\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=1963JAP....34.1296C\" aria-label=\"ADS reference 56\" target=\"_blank\">ADS<\/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=Saturation%20magnetostriction%20of%20single-crystal%20YIG&amp;journal=J.%20Appl.%20Phys.&amp;doi=10.1063%2F1.1729480&amp;volume=34&amp;pages=1296-1297&amp;publication_year=1963&amp;author=Clark%2CAE&amp;author=DeSavage%2CB&amp;author=Coleman%2CW&amp;author=Callen%2CER&amp;author=Callen%2CHB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR57\">Kamra, A., Keshtgar, H., Yan, P. &amp; Bauer, G. E. W. Coherent elastic excitation of spin waves. Phys. Rev. B 91, 104409 (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.91.104409\" data-track-item_id=\"10.1103\/PhysRevB.91.104409\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.91.104409\" aria-label=\"Article reference 57\" data-doi=\"10.1103\/PhysRevB.91.104409\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2015PhRvB..91j4409K\" aria-label=\"ADS reference 57\" target=\"_blank\">ADS<\/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=Coherent%20elastic%20excitation%20of%20spin%20waves&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.91.104409&amp;volume=91&amp;publication_year=2015&amp;author=Kamra%2CA&amp;author=Keshtgar%2CH&amp;author=Yan%2CP&amp;author=Bauer%2CGEW\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR58\">Azovtsev, A. V. &amp; Pertsev, N. A. Magnetization dynamics and spin pumping induced by standing elastic waves. Phys. Rev. B 94, 184401 (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\/PhysRevB.94.184401\" data-track-item_id=\"10.1103\/PhysRevB.94.184401\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1103%2FPhysRevB.94.184401\" aria-label=\"Article reference 58\" data-doi=\"10.1103\/PhysRevB.94.184401\" 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=\"ads reference\" data-track-action=\"ads reference\" href=\"http:\/\/adsabs.harvard.edu\/cgi-bin\/nph-data_query?link_type=ABSTRACT&amp;bibcode=2016PhRvB..94r4401A\" aria-label=\"ADS reference 58\" target=\"_blank\">ADS<\/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=Magnetization%20dynamics%20and%20spin%20pumping%20induced%20by%20standing%20elastic%20waves&amp;journal=Phys.%20Rev.%20B&amp;doi=10.1103%2FPhysRevB.94.184401&amp;volume=94&amp;publication_year=2016&amp;author=Azovtsev%2CAV&amp;author=Pertsev%2CNA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR59\">Ruello, P. &amp; Gusev, V. E. Physical mechanisms of coherent acoustic phonons generation by ultrafast laser action. Ultrasonics 56, 21\u201335 (2015).<\/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.ultras.2014.06.004\" data-track-item_id=\"10.1016\/j.ultras.2014.06.004\" data-track-value=\"article reference\" data-track-action=\"article reference\" href=\"https:\/\/doi.org\/10.1016%2Fj.ultras.2014.06.004\" aria-label=\"Article reference 59\" data-doi=\"10.1016\/j.ultras.2014.06.004\" 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 59\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Physical%20mechanisms%20of%20coherent%20acoustic%20phonons%20generation%20by%20ultrafast%20laser%20action&amp;journal=Ultrasonics&amp;doi=10.1016%2Fj.ultras.2014.06.004&amp;volume=56&amp;pages=21-35&amp;publication_year=2015&amp;author=Ruello%2CP&amp;author=Gusev%2CVE\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR60\">Filatov, I. A. et al. Magnon-Cherenkov effect from a picosecond strain pulse. figshare <a href=\"https:\/\/doi.org\/10.6084\/m9.figshare.28351496\" data-track=\"click_references\" data-track-action=\"external reference\" data-track-value=\"external reference\" data-track-label=\"10.6084\/m9.figshare.28351496\" rel=\"nofollow noopener\" target=\"_blank\">https:\/\/doi.org\/10.6084\/m9.figshare.28351496<\/a> (2025).<\/p>\n","protected":false},"excerpt":{"rendered":"Flebus, B. et al. The 2024 magnonics roadmap. J. Phys. Condens. Matter 36, 363501 (2024). Article\u00a0 Google Scholar\u00a0&hellip;\n","protected":false},"author":2,"featured_media":248500,"comment_status":"","ping_status":"","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[24],"tags":[8005,8004,8008,2298,78797,2294,7940,8003,8006,111,139,69,8007,393,147,3304,8002],"class_list":{"0":"post-248499","1":"post","2":"type-post","3":"status-publish","4":"format-standard","5":"has-post-thumbnail","7":"category-physics","8":"tag-atomic","9":"tag-classical-and-continuum-physics","10":"tag-complex-systems","11":"tag-condensed-matter-physics","12":"tag-ferromagnetism","13":"tag-general","14":"tag-magnetic-properties-and-materials","15":"tag-mathematical-and-computational-physics","16":"tag-molecular","17":"tag-new-zealand","18":"tag-newzealand","19":"tag-nz","20":"tag-optical-and-plasma-physics","21":"tag-physics","22":"tag-science","23":"tag-spintronics","24":"tag-theoretical"},"_links":{"self":[{"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/posts\/248499","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/users\/2"}],"replies":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/comments?post=248499"}],"version-history":[{"count":0,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/posts\/248499\/revisions"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/media\/248500"}],"wp:attachment":[{"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/media?parent=248499"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/categories?post=248499"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/tags?post=248499"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}