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首页> 外文期刊>Journal of Electronic Materials >Effect of Rashba and Dresselhaus Spin-Orbit Couplings on Electron Spin Polarization in a Hybrid Magnetic-Electric Barrier Nanostructure
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Effect of Rashba and Dresselhaus Spin-Orbit Couplings on Electron Spin Polarization in a Hybrid Magnetic-Electric Barrier Nanostructure

机译:Rashba和Temselhaus旋转轨道联轴器对混合动力磁阻纳米结构电子自旋极化的影响

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A theoretical study has been carried out on the spin-dependent electron transport in a hybrid magnetic-electric barrier nanostructure with both Rashba and Dresselhaus spin-orbit couplings, which can be experimentally realized by depositing a ferromagnetic strip and a Schottky metal strip on top of a semiconductor heterostructure. The spin-orbit coupling-dependent transmission coefficient, conductance, and spin polarization are calculated by solving the Schrodinger equation exactly with the help of the transfer-matrix method. We find that both the magnitude and sign of the electron spin polarization vary strongly with the spin-orbit coupling strength. Thus, the degree of electron spin polarization can be manipulated by properly adjusting the spin-orbit coupling strength, and such a nanosystem can be employed as a controllable spin filter for spintronics applications.
机译:通过Rashba和Texelhaus旋转轨道联轴器在混合磁阻纳米结构中的旋转依赖电子传输上进行了理论研究,该旋转轨道耦合可以通过沉积铁磁条和肖特基金属条在顶部的实验实现 半导体异质结构。 通过在转移矩阵方法的帮助下精确地解决Schrodinger方程,计算旋转轨道耦合依赖性传动系统,电导和自旋极化。 我们发现电子自旋极化的幅度和迹象都随着旋转轨道耦合强度而强烈变化。 因此,可以通过适当调节自旋轨道耦合强度来操纵电子自旋极化程度,并且这种纳米系统可以用作用于熔铸网应用的可控旋转过滤器。

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