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Control of spin-charge conversion in van der Waals heterostructures

Authors :
King Abdullah University of Science and Technology
European Commission
Generalitat de Catalunya
Ministerio de Economía y Competitividad (España)
Galceran, Regina
Tian, Bo
Li, Junzhu
Bonell, Fréderic
Jamet, Matthieu
Vergnaud, Céline
Marty, Alain
Garcia, Jose H.
Sierra, Juan F.
Costache, Marius V.
Roche, Stephan
Valenzuela, Sergio O.
Manchon, Aurélien
Zhang, Xixiang
Schwingenschlögl, Udo
King Abdullah University of Science and Technology
European Commission
Generalitat de Catalunya
Ministerio de Economía y Competitividad (España)
Galceran, Regina
Tian, Bo
Li, Junzhu
Bonell, Fréderic
Jamet, Matthieu
Vergnaud, Céline
Marty, Alain
Garcia, Jose H.
Sierra, Juan F.
Costache, Marius V.
Roche, Stephan
Valenzuela, Sergio O.
Manchon, Aurélien
Zhang, Xixiang
Schwingenschlögl, Udo
Publication Year :
2021

Abstract

The interconversion between spin and charge degrees of freedom offers incredible potential for spintronic devices, opening routes for spin injection, detection, and manipulation alternative to the use of ferromagnets. The understanding and control of such interconversion mechanisms, which rely on spin-orbit coupling, is therefore an exciting prospect. The emergence of van der Waals materials possessing large spin-orbit coupling (such as transition metal dichalcogenides or topological insulators) and/or recently discovered van der Waals layered ferromagnets further extends the possibility of spin-to-charge interconversion to ultrathin spintronic devices. Additionally, they offer abundant room for progress in discovering and analyzing novel spin-charge interconversion phenomena. Modifying the properties of van der Waals materials through proximity effects is an added degree of tunability also under exploration. This Perspective discusses the recent advances toward spin-to-charge interconversion in van der Waals materials. It highlights scientific developments which include techniques for large-scale growth, device physics, and theoretical aspects.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1306019851
Document Type :
Electronic Resource