Long-distance spin-transport across the Morin phase transition up to room temperature in ultra-low damping single crystals of the antiferromagnet α-Fe2O3

Hitherto, only circularly polarized antiferromagnetic (AFM) spin-waves (SWs) were expected to convey spin-information. Here, the authors present persistent spin-transport over long distances in the easy-plane AFM phase of hematite, α-Fe2O3, via linearly polarized SW pairs with ultra-low damping.

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Autores principales: R. Lebrun, A. Ross, O. Gomonay, V. Baltz, U. Ebels, A.-L. Barra, A. Qaiumzadeh, A. Brataas, J. Sinova, M. Kläui
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/6145c46b7e9149d48bb8b48101ee3381
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spelling oai:doaj.org-article:6145c46b7e9149d48bb8b48101ee33812021-12-02T14:16:47ZLong-distance spin-transport across the Morin phase transition up to room temperature in ultra-low damping single crystals of the antiferromagnet α-Fe2O310.1038/s41467-020-20155-72041-1723https://doaj.org/article/6145c46b7e9149d48bb8b48101ee33812020-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-20155-7https://doaj.org/toc/2041-1723Hitherto, only circularly polarized antiferromagnetic (AFM) spin-waves (SWs) were expected to convey spin-information. Here, the authors present persistent spin-transport over long distances in the easy-plane AFM phase of hematite, α-Fe2O3, via linearly polarized SW pairs with ultra-low damping.R. LebrunA. RossO. GomonayV. BaltzU. EbelsA.-L. BarraA. QaiumzadehA. BrataasJ. SinovaM. KläuiNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-7 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
R. Lebrun
A. Ross
O. Gomonay
V. Baltz
U. Ebels
A.-L. Barra
A. Qaiumzadeh
A. Brataas
J. Sinova
M. Kläui
Long-distance spin-transport across the Morin phase transition up to room temperature in ultra-low damping single crystals of the antiferromagnet α-Fe2O3
description Hitherto, only circularly polarized antiferromagnetic (AFM) spin-waves (SWs) were expected to convey spin-information. Here, the authors present persistent spin-transport over long distances in the easy-plane AFM phase of hematite, α-Fe2O3, via linearly polarized SW pairs with ultra-low damping.
format article
author R. Lebrun
A. Ross
O. Gomonay
V. Baltz
U. Ebels
A.-L. Barra
A. Qaiumzadeh
A. Brataas
J. Sinova
M. Kläui
author_facet R. Lebrun
A. Ross
O. Gomonay
V. Baltz
U. Ebels
A.-L. Barra
A. Qaiumzadeh
A. Brataas
J. Sinova
M. Kläui
author_sort R. Lebrun
title Long-distance spin-transport across the Morin phase transition up to room temperature in ultra-low damping single crystals of the antiferromagnet α-Fe2O3
title_short Long-distance spin-transport across the Morin phase transition up to room temperature in ultra-low damping single crystals of the antiferromagnet α-Fe2O3
title_full Long-distance spin-transport across the Morin phase transition up to room temperature in ultra-low damping single crystals of the antiferromagnet α-Fe2O3
title_fullStr Long-distance spin-transport across the Morin phase transition up to room temperature in ultra-low damping single crystals of the antiferromagnet α-Fe2O3
title_full_unstemmed Long-distance spin-transport across the Morin phase transition up to room temperature in ultra-low damping single crystals of the antiferromagnet α-Fe2O3
title_sort long-distance spin-transport across the morin phase transition up to room temperature in ultra-low damping single crystals of the antiferromagnet α-fe2o3
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/6145c46b7e9149d48bb8b48101ee3381
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