Efficient intrinsic spin relaxation in graphene due to flexural distortions


Autoria(s): Fratini, Simone; Gosálbez Martínez, Daniel; Merodio Cámara, Pablo; Fernández-Rossier, Joaquín
Contribuinte(s)

Universidad de Alicante. Departamento de Física Aplicada

Grupo de Nanofísica

Data(s)

22/11/2012

22/11/2012

28/02/2012

Resumo

We propose an intrinsic spin scattering mechanism in graphene originated by the interplay of atomic spin-orbit interaction and the local curvature induced by flexural distortions of the atomic lattice. Starting from a multiorbital tight-binding Hamiltonian with spin-orbit coupling considered non-perturbatively, we derive an effective Hamiltonian for the spin scattering of the Dirac electrons due to flexural distortions. We compute the spin lifetime due to both flexural phonons and ripples and we find values in the 1-10 ns range at room temperature. The proposed mechanism dominates the spin relaxation in high mobility graphene samples and should also apply to other planar aromatic compounds.

This work has been financially supported by MEC-Spain (MAT07-67845, FIS2010-21883-C02-01, and CONSOLIDER CSD2007-00010) and Generalitat Valenciana (ACOMP/2010/070).

Identificador

http://hdl.handle.net/10045/25275

Idioma(s)

eng

Direitos

info:eu-repo/semantics/openAccess

Palavras-Chave #Intrinsic spin scattering mechanism #Graphene #Atomic spin-orbit interaction #Flexural distortions #Física de la Materia Condensada
Tipo

info:eu-repo/semantics/preprint