Spin filtering by proximity effects at hybridized interfaces in spin-valves with 2D graphene barriers

2D materials are foreseen as an opportunity to tailor spintronics devices interfaces, a.k.a spinterfaces. Here, using state-of-the-art large-scale integration in spin-valves, authors demonstrate that hybridization of graphene with a metallic spin source results in strong spin filtering effects.

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Autores principales: Maëlis Piquemal-Banci, Regina Galceran, Simon M.-M. Dubois, Victor Zatko, Marta Galbiati, Florian Godel, Marie-Blandine Martin, Robert S. Weatherup, Frédéric Petroff, Albert Fert, Jean-Christophe Charlier, John Robertson, Stephan Hofmann, Bruno Dlubak, Pierre Seneor
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/c7743490fde54e20a465066faa6385f6
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spelling oai:doaj.org-article:c7743490fde54e20a465066faa6385f62021-12-02T15:39:23ZSpin filtering by proximity effects at hybridized interfaces in spin-valves with 2D graphene barriers10.1038/s41467-020-19420-62041-1723https://doaj.org/article/c7743490fde54e20a465066faa6385f62020-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-19420-6https://doaj.org/toc/2041-17232D materials are foreseen as an opportunity to tailor spintronics devices interfaces, a.k.a spinterfaces. Here, using state-of-the-art large-scale integration in spin-valves, authors demonstrate that hybridization of graphene with a metallic spin source results in strong spin filtering effects.Maëlis Piquemal-BanciRegina GalceranSimon M.-M. DuboisVictor ZatkoMarta GalbiatiFlorian GodelMarie-Blandine MartinRobert S. WeatherupFrédéric PetroffAlbert FertJean-Christophe CharlierJohn RobertsonStephan HofmannBruno DlubakPierre SeneorNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Maëlis Piquemal-Banci
Regina Galceran
Simon M.-M. Dubois
Victor Zatko
Marta Galbiati
Florian Godel
Marie-Blandine Martin
Robert S. Weatherup
Frédéric Petroff
Albert Fert
Jean-Christophe Charlier
John Robertson
Stephan Hofmann
Bruno Dlubak
Pierre Seneor
Spin filtering by proximity effects at hybridized interfaces in spin-valves with 2D graphene barriers
description 2D materials are foreseen as an opportunity to tailor spintronics devices interfaces, a.k.a spinterfaces. Here, using state-of-the-art large-scale integration in spin-valves, authors demonstrate that hybridization of graphene with a metallic spin source results in strong spin filtering effects.
format article
author Maëlis Piquemal-Banci
Regina Galceran
Simon M.-M. Dubois
Victor Zatko
Marta Galbiati
Florian Godel
Marie-Blandine Martin
Robert S. Weatherup
Frédéric Petroff
Albert Fert
Jean-Christophe Charlier
John Robertson
Stephan Hofmann
Bruno Dlubak
Pierre Seneor
author_facet Maëlis Piquemal-Banci
Regina Galceran
Simon M.-M. Dubois
Victor Zatko
Marta Galbiati
Florian Godel
Marie-Blandine Martin
Robert S. Weatherup
Frédéric Petroff
Albert Fert
Jean-Christophe Charlier
John Robertson
Stephan Hofmann
Bruno Dlubak
Pierre Seneor
author_sort Maëlis Piquemal-Banci
title Spin filtering by proximity effects at hybridized interfaces in spin-valves with 2D graphene barriers
title_short Spin filtering by proximity effects at hybridized interfaces in spin-valves with 2D graphene barriers
title_full Spin filtering by proximity effects at hybridized interfaces in spin-valves with 2D graphene barriers
title_fullStr Spin filtering by proximity effects at hybridized interfaces in spin-valves with 2D graphene barriers
title_full_unstemmed Spin filtering by proximity effects at hybridized interfaces in spin-valves with 2D graphene barriers
title_sort spin filtering by proximity effects at hybridized interfaces in spin-valves with 2d graphene barriers
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/c7743490fde54e20a465066faa6385f6
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