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Large spin relaxation anisotropy and valley-Zeeman spin-orbit coupling in WSe2/Gr/hBN heterostructures

Large spin-orbital proximity effects have been predicted in graphene interfaced with a transition metal dichalcogenide layer. Whereas clear evidence for an enhanced spin-orbit coupling has been found at large carrier densities, the type of spin-orbit coupling and its relaxation mechanism remained un... Full description

Journal Title: arXiv.org Dec 18, 2017
Main Author: Zihlmann, Simon
Other Authors: Cummings, Aron , Garcia, Jose , Watanabe, Kenji , Taniguchi, Takashi , Schönenberger, Christian , Makk, Péter
Format: Electronic Article Electronic Article
Language: English
Subjects:
ID: DOI: 10.1103/PhysRevB.97.075434
Zum Text:
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recordid: proquest2071668048
title: Large spin relaxation anisotropy and valley-Zeeman spin-orbit coupling in WSe2/Gr/hBN heterostructures
format: Article
creator:
  • Zihlmann, Simon
  • Cummings, Aron
  • Garcia, Jose
  • Watanabe, Kenji
  • Taniguchi, Takashi
  • Schönenberger, Christian
  • Makk, Péter
subjects:
  • Spin-Orbit Interactions
  • Anisotropy
  • Chalcogenides
  • Graphene
  • Carrier Density
  • Heterostructures
  • Transition Metal Compounds
ispartof: arXiv.org, Dec 18, 2017
description: Large spin-orbital proximity effects have been predicted in graphene interfaced with a transition metal dichalcogenide layer. Whereas clear evidence for an enhanced spin-orbit coupling has been found at large carrier densities, the type of spin-orbit coupling and its relaxation mechanism remained unknown....
language: eng
source:
identifier: DOI: 10.1103/PhysRevB.97.075434
fulltext: fulltext_linktorsrc
url: Link


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titleLarge spin relaxation anisotropy and valley-Zeeman spin-orbit coupling in WSe2/Gr/hBN heterostructures
creatorZihlmann, Simon ; Cummings, Aron ; Garcia, Jose ; Watanabe, Kenji ; Taniguchi, Takashi ; Schönenberger, Christian ; Makk, Péter
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identifierDOI: 10.1103/PhysRevB.97.075434
subjectSpin-Orbit Interactions ; Anisotropy ; Chalcogenides ; Graphene ; Carrier Density ; Heterostructures ; Transition Metal Compounds
descriptionLarge spin-orbital proximity effects have been predicted in graphene interfaced with a transition metal dichalcogenide layer. Whereas clear evidence for an enhanced spin-orbit coupling has been found at large carrier densities, the type of spin-orbit coupling and its relaxation mechanism remained unknown....
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titleLarge spin relaxation anisotropy and valley-Zeeman spin-orbit coupling in WSe2/Gr/hBN heterostructures
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titleLarge spin relaxation anisotropy and valley-Zeeman spin-orbit coupling in WSe2/Gr/hBN heterostructures
authorZihlmann, Simon ; Cummings, Aron ; Garcia, Jose ; Watanabe, Kenji ; Taniguchi, Takashi ; Schönenberger, Christian ; Makk, Péter
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abstractLarge spin-orbital proximity effects have been predicted in graphene interfaced with a transition metal dichalcogenide layer. Whereas clear evidence for an enhanced spin-orbit coupling has been found at large carrier densities, the type of spin-orbit coupling and its relaxation mechanism remained unknown....
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