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首页> 外文期刊>Journal of Computational Electronics >Spin filtering in a -magnetic-barrier nanostructure modulated by Rashba and Dresselhaus spin-orbit couplings
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Spin filtering in a -magnetic-barrier nanostructure modulated by Rashba and Dresselhaus spin-orbit couplings

机译:由Rashba和Dresselhaus自旋轨道耦合调制的电磁屏障纳米结构中的自旋滤波

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摘要

We theoretically investigated the electron-spin transport properties of an antiparallel double -magnetic-barrier nanostructure modulated by spin-orbit coupling (SOC), which could be fabricated experimentally by depositing two ferromagnetic stripes with horizontal magnetization on the top and bottom of an InAs/AlInAs semiconductor heterostructure. Both Rashba and Dresselhaus SOCs were taken into account, and the transmission coefficient, conductance, and spin polarization calculated analytically by means of the improved transfer matrix method. The electron-spin transport through this nanosystem is found to be strongly dependent on the SOC. The electron-spin polarization is also found to vary with the strength of the SOC, potentially enabling tunable spin filters for use in spintronic applications.
机译:我们从理论上研究了由自旋轨道耦合(SOC)调制的反平行双磁性势垒纳米结构的电子自旋输运特性,该结构可以通过在InAs /的顶部和底部沉积两个水平磁化的铁磁条进行实验制造AlInAs半导体异质结构。同时考虑了Rashba和Dresselhaus SOC,并通过改进的传输矩阵方法解析地计算了传输系数,电导和自旋极化。发现通过该纳米系统的电子自旋传输强烈依赖于SOC。还发现电子自旋极化会随SOC的强度而变化,从而有可能使可调谐自旋滤波器用于自旋电子学应用。

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