Exciton-driven antiferromagnetic metal in a correlated van der Waals insulator

Previous work has shown the existence of spin-orbit-entangled excitons and their coupling to antiferromagnetism in the correlated insulator NiPS3. Here the authors show that non-equilibrium driving of these excitons produces a transient metallic antiferromagnetic state that cannot be achieved by tun...

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Autores principales: Carina A. Belvin, Edoardo Baldini, Ilkem Ozge Ozel, Dan Mao, Hoi Chun Po, Clifford J. Allington, Suhan Son, Beom Hyun Kim, Jonghyeon Kim, Inho Hwang, Jae Hoon Kim, Je-Geun Park, T. Senthil, Nuh Gedik
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/eb77d2588f7a4c1eab4eb9b0a763a10c
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spelling oai:doaj.org-article:eb77d2588f7a4c1eab4eb9b0a763a10c2021-12-02T18:50:59ZExciton-driven antiferromagnetic metal in a correlated van der Waals insulator10.1038/s41467-021-25164-82041-1723https://doaj.org/article/eb77d2588f7a4c1eab4eb9b0a763a10c2021-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25164-8https://doaj.org/toc/2041-1723Previous work has shown the existence of spin-orbit-entangled excitons and their coupling to antiferromagnetism in the correlated insulator NiPS3. Here the authors show that non-equilibrium driving of these excitons produces a transient metallic antiferromagnetic state that cannot be achieved by tuning the temperature in equilibrium.Carina A. BelvinEdoardo BaldiniIlkem Ozge OzelDan MaoHoi Chun PoClifford J. AllingtonSuhan SonBeom Hyun KimJonghyeon KimInho HwangJae Hoon KimJe-Geun ParkT. SenthilNuh GedikNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-7 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Carina A. Belvin
Edoardo Baldini
Ilkem Ozge Ozel
Dan Mao
Hoi Chun Po
Clifford J. Allington
Suhan Son
Beom Hyun Kim
Jonghyeon Kim
Inho Hwang
Jae Hoon Kim
Je-Geun Park
T. Senthil
Nuh Gedik
Exciton-driven antiferromagnetic metal in a correlated van der Waals insulator
description Previous work has shown the existence of spin-orbit-entangled excitons and their coupling to antiferromagnetism in the correlated insulator NiPS3. Here the authors show that non-equilibrium driving of these excitons produces a transient metallic antiferromagnetic state that cannot be achieved by tuning the temperature in equilibrium.
format article
author Carina A. Belvin
Edoardo Baldini
Ilkem Ozge Ozel
Dan Mao
Hoi Chun Po
Clifford J. Allington
Suhan Son
Beom Hyun Kim
Jonghyeon Kim
Inho Hwang
Jae Hoon Kim
Je-Geun Park
T. Senthil
Nuh Gedik
author_facet Carina A. Belvin
Edoardo Baldini
Ilkem Ozge Ozel
Dan Mao
Hoi Chun Po
Clifford J. Allington
Suhan Son
Beom Hyun Kim
Jonghyeon Kim
Inho Hwang
Jae Hoon Kim
Je-Geun Park
T. Senthil
Nuh Gedik
author_sort Carina A. Belvin
title Exciton-driven antiferromagnetic metal in a correlated van der Waals insulator
title_short Exciton-driven antiferromagnetic metal in a correlated van der Waals insulator
title_full Exciton-driven antiferromagnetic metal in a correlated van der Waals insulator
title_fullStr Exciton-driven antiferromagnetic metal in a correlated van der Waals insulator
title_full_unstemmed Exciton-driven antiferromagnetic metal in a correlated van der Waals insulator
title_sort exciton-driven antiferromagnetic metal in a correlated van der waals insulator
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/eb77d2588f7a4c1eab4eb9b0a763a10c
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