Nonequilibrium spin polarization effects in a spin-orbit coupling system and contacting metallic leads

Yongjin Jiang
Phys. Rev. B 74, 195308 – Published 7 November 2006

Abstract

We study theoretically the current-induced spin polarization effect in a two-terminal mesoscopic structure which is composed of a semiconductor two-dimensional electron gas (2DEG) bar with Rashba spin-orbit (SO) interaction and two attached ideal leads. The nonequilibrium spin density is calculated by solving the scattering wave functions explicitly within the ballistic transport regime. We found that for a Rashba SO system the electrical current can induce spin polarization in the SO system as well as in the ideal leads. The induced polarization in the 2DEG shows some qualitative features of the intrinsic spin Hall effect. On the other hand, the nonequilibrium spin density in the ideal leads, after being averaged in the transversal direction, is independent of the distance measured from the lead/SO system interface, except in the vicinity of the interface. Such a lead polarization effect can even be enhanced by the presence of weak impurity scattering in the SO system and may be detectable in real experiments.

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  • Received 24 October 2005

DOI:https://doi.org/10.1103/PhysRevB.74.195308

©2006 American Physical Society

Authors & Affiliations

Yongjin Jiang*

  • Physics Department of ZheJiang Normal University, Jinhua, Zhejiang Province, 321004, People’s Republic of China

  • *Electronic address: jyj@zjnu.cn

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Issue

Vol. 74, Iss. 19 — 15 November 2006

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