Title of article :
Effect of electric field and magnetic field on spin transport in bilayer graphene armchair nanoribbons: A Monte Carlo simulation study
Author/Authors :
Salimath، نويسنده , , Akshaykumar and Ghosh، نويسنده , , Bahniman، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2014
Pages :
5
From page :
1526
To page :
1530
Abstract :
In this article we study the effect of external magnetic field and electric field on spin transport in bilayer armchair graphene nanoribbons (GNR) by employing semiclassical Monte Carlo approach. We include Dʹyakonov-Perelʹ (DP) relaxation due to structural inversion asymmetry (Rashba spin-orbit coupling) and Elliott-Yafet (EY) relaxation to model spin dephasing. In the model we neglect the effect of local magnetic moments due to adatoms and vacancies. We have considered injection polarization along z-direction perpendicular to the plane of graphene and the magnitude of ensemble averaged spin variation is studied along the x-direction which is the transport direction. To the best of our knowledge there has been no theoretical investigation of the effects of external magnetic field on spin transport in graphene nanoribbons. This theoretical investigation is important in order to identify the factors responsible for experimentally observed spin relaxation length in graphene GNRs.
Keywords :
Monte Carlo Method , Magnetic field , Bilayer armchair graphene nanoribbon , Spin relaxation lengths , Electric field , Spin transport , scattering
Journal title :
Current Applied Physics
Serial Year :
2014
Journal title :
Current Applied Physics
Record number :
1792362
Link To Document :
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