Evidence for spin-to-charge conversion by Rashba coupling in metallic states at the Fe/Ge(111) interface

Engineering the interaction between spin and charge is important for the creation of spintronics devices. Here, the authors show that the Rashba effect at a single crystalline Fe/Ge(111) interface produces enhanced spin-charge conversion, which could help develop a spin field-effect-transistor.

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Autores principales: S. Oyarzún, A. K. Nandy, F. Rortais, J.-C. Rojas-Sánchez, M.-T. Dau, P. Noël, P. Laczkowski, S. Pouget, H. Okuno, L. Vila, C. Vergnaud, C. Beigné, A. Marty, J.-P. Attané, S. Gambarelli, J.-M. George, H. Jaffrès, S. Blügel, M. Jamet
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/4e7a0d52402845b5b59c24b5655ea43c
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spelling oai:doaj.org-article:4e7a0d52402845b5b59c24b5655ea43c2021-12-02T17:31:20ZEvidence for spin-to-charge conversion by Rashba coupling in metallic states at the Fe/Ge(111) interface10.1038/ncomms138572041-1723https://doaj.org/article/4e7a0d52402845b5b59c24b5655ea43c2016-12-01T00:00:00Zhttps://doi.org/10.1038/ncomms13857https://doaj.org/toc/2041-1723Engineering the interaction between spin and charge is important for the creation of spintronics devices. Here, the authors show that the Rashba effect at a single crystalline Fe/Ge(111) interface produces enhanced spin-charge conversion, which could help develop a spin field-effect-transistor.S. OyarzúnA. K. NandyF. RortaisJ.-C. Rojas-SánchezM.-T. DauP. NoëlP. LaczkowskiS. PougetH. OkunoL. VilaC. VergnaudC. BeignéA. MartyJ.-P. AttanéS. GambarelliJ.-M. GeorgeH. JaffrèsS. BlügelM. JametNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-9 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
S. Oyarzún
A. K. Nandy
F. Rortais
J.-C. Rojas-Sánchez
M.-T. Dau
P. Noël
P. Laczkowski
S. Pouget
H. Okuno
L. Vila
C. Vergnaud
C. Beigné
A. Marty
J.-P. Attané
S. Gambarelli
J.-M. George
H. Jaffrès
S. Blügel
M. Jamet
Evidence for spin-to-charge conversion by Rashba coupling in metallic states at the Fe/Ge(111) interface
description Engineering the interaction between spin and charge is important for the creation of spintronics devices. Here, the authors show that the Rashba effect at a single crystalline Fe/Ge(111) interface produces enhanced spin-charge conversion, which could help develop a spin field-effect-transistor.
format article
author S. Oyarzún
A. K. Nandy
F. Rortais
J.-C. Rojas-Sánchez
M.-T. Dau
P. Noël
P. Laczkowski
S. Pouget
H. Okuno
L. Vila
C. Vergnaud
C. Beigné
A. Marty
J.-P. Attané
S. Gambarelli
J.-M. George
H. Jaffrès
S. Blügel
M. Jamet
author_facet S. Oyarzún
A. K. Nandy
F. Rortais
J.-C. Rojas-Sánchez
M.-T. Dau
P. Noël
P. Laczkowski
S. Pouget
H. Okuno
L. Vila
C. Vergnaud
C. Beigné
A. Marty
J.-P. Attané
S. Gambarelli
J.-M. George
H. Jaffrès
S. Blügel
M. Jamet
author_sort S. Oyarzún
title Evidence for spin-to-charge conversion by Rashba coupling in metallic states at the Fe/Ge(111) interface
title_short Evidence for spin-to-charge conversion by Rashba coupling in metallic states at the Fe/Ge(111) interface
title_full Evidence for spin-to-charge conversion by Rashba coupling in metallic states at the Fe/Ge(111) interface
title_fullStr Evidence for spin-to-charge conversion by Rashba coupling in metallic states at the Fe/Ge(111) interface
title_full_unstemmed Evidence for spin-to-charge conversion by Rashba coupling in metallic states at the Fe/Ge(111) interface
title_sort evidence for spin-to-charge conversion by rashba coupling in metallic states at the fe/ge(111) interface
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/4e7a0d52402845b5b59c24b5655ea43c
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