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Spin-dependent transport through a serial double-quantum-dot with Rashba spin-orbit interaction

机译:通过具有Rashba自旋轨道相互作用的串行双量子点的自旋依赖性传输

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We study the spin-dependent electron transport through a serial double-quantum-dot (DQD) by using Green's function equation of motion technique. Special attention is paid to the functions of the Rashba spin-orbit (RSO) effect in one of the DQD and the inter-dot tunneling coupling t_c. When the electrons transport from the left or the right lead into the middle lead, a quasi-two channel is established due to the existence of t_c. Then, the RSO interaction will induce into the tunnel matrix element a spin-dependent extra phase factor σΦR as the electrons flowing through different conduction channels, and thus making the current in the middle lead to be spin-polarized. Moreover, by properly adjusting the value of t_c, the dot-lead coupling strength, dots' levels and the external bias voltages, a net spin current without the accompanying of charge current can be generated. The structure proposed here is simple and can be realized in the present experiments.
机译:我们使用运动技术的格林函数方程研究了通过串联双量子点(DQD)的自旋依赖性电子传输。在DQD和点间隧道耦合t_c之一中,要特别注意Rashba自旋轨道(RSO)效应的功能。当电子从左或右引线传输到中间引线时,由于存在t_c,建立了准两通道。然后,当电子流过不同的导电通道时,RSO相互作用将在自旋相关的额外相位因子σΦR中引入隧道矩阵元素,从而使中间引线中的电流自旋极化。而且,通过适当地调整t_c的值,点-引线耦合强度,点的电平和外部偏置电压,可以产生没有电荷电流伴随的净自旋电流。这里提出的结构很简单,可以在本实验中实现。

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