dc.contributor.author
Cummings, Aron
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Garcia, José H.
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Fabian, Jaroslav
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Roche, Stephan
dc.identifier
https://ddd.uab.cat/record/194891
dc.identifier
urn:10.1103/PhysRevLett.119.206601
dc.identifier
urn:oai:ddd.uab.cat:194891
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urn:scopus_id:85034626042
dc.identifier
urn:articleid:10797114v119n20p206601
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urn:wos_id:000415058400006
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urn:oai:egreta.uab.cat:publications/e33e380d-a4b4-4b1e-8a46-081a80676584
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urn:icn2uab:4129951
dc.description.abstract
We report on fundamental aspects of spin dynamics in heterostructures of graphene and transition metal dichalcogenides (TMDCs). By using realistic models derived from first principles we compute the spin lifetime anisotropy, defined as the ratio of lifetimes for spins pointing out of the graphene plane to those pointing in the plane. We find that the anisotropy can reach values of tens to hundreds, which is unprecedented for typical 2D systems with spin-orbit coupling and indicates a qualitatively new regime of spin relaxation. This behavior is mediated by spin-valley locking, which is strongly imprinted onto graphene by TMDCs. Our results indicate that this giant spin lifetime anisotropy can serve as an experimental signature of materials with strong spin-valley locking, including graphene-TMDC heterostructures and TMDCs themselves. Additionally, materials with giant spin lifetime anisotropy can provide an exciting platform for manipulating the valley and spin degrees of freedom, and for designing novel spintronic devices.
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application/pdf
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European Commission 696656
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Ministerio de Economía y Competitividad FIS2015-67767-P
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Ministerio de Economía y Competitividad SEV-2013-0295
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Agència de Gestió d'Ajuts Universitaris i de Recerca 2014/SGR-58
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Physical review letters ; Vol. 119 issue 20 (Nov. 2017), p. 206601
dc.rights
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dc.rights
https://rightsstatements.org/vocab/InC/1.0/
dc.subject
First principles
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Proximity effects
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Realistic model
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Spin degrees of freedom
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Spin relaxation
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Spin-orbit couplings
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Spintronic device
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Transition metal dichalcogenides
dc.title
Giant spin lifetime anisotropy in graphene induced by proximity effects