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Spin Transport in a Rashba Ring-Quantum Dot System Pumped by Microwave Fields

Spin Transport in a Rashba Ring-Quantum Dot System Pumped by Microwave Fields
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摘要 We report a theoretical study on producing electrically spin-polarized current in the Rashba ring with parallel double dots embedded, which are subject to two time-dependent microwave fields. By means of the Keldysh Green's function method, we present an analytic result of the pumped current at adiabatic limit and demonstrate that the interplay between the quantum pumping effect and spin-dependent quantum interference can lead to an arbitrarily controllable spin-polarized current in the device. The magnitude and direction of the charge and spin current can be effectively modulated by system parameters such as the pumping phase difference, Rashba precession phase, and the dynamic phase difference of electron traveling in two arms of ring; moreover, the spin-polarization degree of the charge current can also be tuned in the range [-∞, +∞]. Our findings may shed light on the all-electric way to produce the controllable spin-polarized charge current in the field of spintronics.
作者 张林 汪军
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2011年第4期709-714,共6页 理论物理通讯(英文版)
基金 Supported by National Natural Science Foundation of China under Grant Nos.110704032 and 110704033 the Natural Science Foundation of JiangSu Province under Grant No.BK2010416
关键词 spin-polarized current Rashba spin-orbit coupling microwave field Keldysh Green's function 自旋相关 微波场 量子点 泵送系统 自旋电子学 运输 格林函数方法 极化电流
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