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Temperature-dependent transport and spin accumulation in a quantum wire with Rashba spin-orbit interaction

机译:具有Rashba自旋轨道相互作用的量子线中与温度有关的传输和自旋积累

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We study the theory of temperature-dependent electron transport, spin polarization, and spin accumulation in a Rashba spin-orbit interaction (RSOI) quantum wire connected nonadiabatically to two normal conductor electrode leads. The influence of both the wire-lead connection and the RSOI on the electron transport is treated analytically by means of a scattering matrix technique and by using an effective free-electron approximation. Through analytical analysis and numerical examples, we demonstrate a simple way to design a sensitive spin-transfer switch that operates without applying any external magnetic fields or attaching ferromagnetic contacts. We also demonstrate that the antisymmetry of the spin accumulation can be destroyed slightly by the coupling between the leads and the wire. Moreover, temperature can weaken the polarization and smear out the oscillations in the spin accumulation.
机译:我们研究了与Rashba自旋轨道相互作用(RSOI)量子线非绝热地连接到两个正常导体电极引线的温度相关电子传输,自旋极化和自旋积累的理论。借助散射矩阵技术并使用有效的自由电子近似,可以分析处理导线连接和RSOI对电子传输的影响。通过分析分析和数值示例,我们演示了一种设计灵敏的自旋转换开关的简单方法,该开关无需施加任何外部磁场或附着铁磁触点即可工作。我们还证明,引线和导线之间的耦合会轻微破坏自旋累积的反对称性。此外,温度会削弱极化并抹去自旋积累中的振荡。

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