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各向异性 Rashba 自旋轨道耦合对石墨烯中电流诱导自旋极化的影响。

The influence of anisotropic Rashba spin-orbit coupling on current-induced spin polarization in graphene.

作者信息

Hosseini Mir Vahid

机构信息

Department of Physics, Faculty of Science, University of Zanjan, Zanjan 45371-38791, Iran.

出版信息

J Phys Condens Matter. 2017 Aug 9;29(31):315502. doi: 10.1088/1361-648X/aa7735. Epub 2017 Jun 5.

Abstract

We consider a disordered graphene layer with anisotropic Rashba spin-orbit coupling subjected to a longitudinal electric field. Using the linear response theory we calculate current-induced spin polarization including in-plane normal and parallel components with respect to the electric field direction. Unlike the case of isotropic Rashba spin-orbit where the normal component of spin polarization is linear in terms of Fermi energy around the Dirac point, anisotropic Rashba spin-orbit can result in non-linear dependence of this component at such energies within the Lifshitz points. Furthermore, we show that anisotropic Rashba interaction allows for tuning the direction of spin polarization from perpendicular direction to the parallel one such that for certain values of Rashba parameters the magnitudes of both components can also be quenched. The effect of carriers scattering on randomly distributed non-magnetic disorders is also taken into account by calculating vertex correction. This results in modification of spin polarization components depending on the relative strength of Rashba parameters.

摘要

我们考虑一个具有各向异性Rashba自旋轨道耦合的无序石墨烯层,并使其处于纵向电场中。利用线性响应理论,我们计算了电流诱导的自旋极化,包括相对于电场方向的面内法向和平行分量。与各向同性Rashba自旋轨道的情况不同,在狄拉克点附近,自旋极化的法向分量在费米能方面是线性的,而各向异性Rashba自旋轨道在Lifshitz点内的此类能量下会导致该分量的非线性依赖关系。此外,我们表明各向异性Rashba相互作用允许将自旋极化方向从垂直方向调整为平行方向,使得对于Rashba参数的某些值,两个分量的大小也可以被淬灭。通过计算顶点修正,还考虑了载流子在随机分布的非磁性无序上的散射效应。这导致自旋极化分量根据Rashba参数的相对强度而发生变化。

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