Topological–chiral magnetic interactions driven by emergent orbital magnetism

The motion of electrons in a complex magnetic background may generate novel magnetic interactions. Here, Grytsiuk et al. report that a peculiar orbital motion of electrons in response to a non-coplanarity of neighbouring spins leads to a topological orbital moment, which further gives rise to a new...

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Autores principales: S. Grytsiuk, J.-P. Hanke, M. Hoffmann, J. Bouaziz, O. Gomonay, G. Bihlmayer, S. Lounis, Y. Mokrousov, S. Blügel
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/01828335835a44eabbcc1b9c4ad2e27f
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spelling oai:doaj.org-article:01828335835a44eabbcc1b9c4ad2e27f2021-12-02T14:40:39ZTopological–chiral magnetic interactions driven by emergent orbital magnetism10.1038/s41467-019-14030-32041-1723https://doaj.org/article/01828335835a44eabbcc1b9c4ad2e27f2020-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-14030-3https://doaj.org/toc/2041-1723The motion of electrons in a complex magnetic background may generate novel magnetic interactions. Here, Grytsiuk et al. report that a peculiar orbital motion of electrons in response to a non-coplanarity of neighbouring spins leads to a topological orbital moment, which further gives rise to a new class of magnetic interactions.S. GrytsiukJ.-P. HankeM. HoffmannJ. BouazizO. GomonayG. BihlmayerS. LounisY. MokrousovS. BlügelNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-7 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
S. Grytsiuk
J.-P. Hanke
M. Hoffmann
J. Bouaziz
O. Gomonay
G. Bihlmayer
S. Lounis
Y. Mokrousov
S. Blügel
Topological–chiral magnetic interactions driven by emergent orbital magnetism
description The motion of electrons in a complex magnetic background may generate novel magnetic interactions. Here, Grytsiuk et al. report that a peculiar orbital motion of electrons in response to a non-coplanarity of neighbouring spins leads to a topological orbital moment, which further gives rise to a new class of magnetic interactions.
format article
author S. Grytsiuk
J.-P. Hanke
M. Hoffmann
J. Bouaziz
O. Gomonay
G. Bihlmayer
S. Lounis
Y. Mokrousov
S. Blügel
author_facet S. Grytsiuk
J.-P. Hanke
M. Hoffmann
J. Bouaziz
O. Gomonay
G. Bihlmayer
S. Lounis
Y. Mokrousov
S. Blügel
author_sort S. Grytsiuk
title Topological–chiral magnetic interactions driven by emergent orbital magnetism
title_short Topological–chiral magnetic interactions driven by emergent orbital magnetism
title_full Topological–chiral magnetic interactions driven by emergent orbital magnetism
title_fullStr Topological–chiral magnetic interactions driven by emergent orbital magnetism
title_full_unstemmed Topological–chiral magnetic interactions driven by emergent orbital magnetism
title_sort topological–chiral magnetic interactions driven by emergent orbital magnetism
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/01828335835a44eabbcc1b9c4ad2e27f
work_keys_str_mv AT sgrytsiuk topologicalchiralmagneticinteractionsdrivenbyemergentorbitalmagnetism
AT jphanke topologicalchiralmagneticinteractionsdrivenbyemergentorbitalmagnetism
AT mhoffmann topologicalchiralmagneticinteractionsdrivenbyemergentorbitalmagnetism
AT jbouaziz topologicalchiralmagneticinteractionsdrivenbyemergentorbitalmagnetism
AT ogomonay topologicalchiralmagneticinteractionsdrivenbyemergentorbitalmagnetism
AT gbihlmayer topologicalchiralmagneticinteractionsdrivenbyemergentorbitalmagnetism
AT slounis topologicalchiralmagneticinteractionsdrivenbyemergentorbitalmagnetism
AT ymokrousov topologicalchiralmagneticinteractionsdrivenbyemergentorbitalmagnetism
AT sblugel topologicalchiralmagneticinteractionsdrivenbyemergentorbitalmagnetism
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