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首页> 外文期刊>Annals of Physics >Nonequilibrium spin transport through a diluted magnetic semiconductor quantum dot system with noncollinear magnetization
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Nonequilibrium spin transport through a diluted magnetic semiconductor quantum dot system with noncollinear magnetization

机译:通过非共线磁化的稀磁半导体量子点系统进行非平衡自旋传输

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摘要

The spin-dependent transport through a diluted magnetic semiconductor quantum dot (QD) which is coupled via magnetic tunnel junctions to two ferromagnetic leads is studied theoretically. A noncollinear system is considered, where the QD is magnetized at an arbitrary angle with respect to the leads' magnetization. The tunneling current is calculated in the coherent regime via the Keldysh nonequilibrium Green's function (NEGF) formalism, incorporating the electron-electron interaction in the QD. We provide the first analytical solution for the Green's function of the noncollinear DMS quantum dot system, solved via the equation of motion method under Hartree-Fock approximation. The transport characteristics (charge and spin currents, and tunnel magnetoresistance (TMR)) are evaluated for different voltage regimes. The interplay between spin-dependent tunneling and single-charge effects results in three distinct voltage regimes in the spin and charge current characteristics. The voltage range in which the QD is singly occupied corresponds to the maximum spin current and greatest sensitivity of the spin current to the QD magnetization orientation. The QD device also shows transport features suitable for sensor applications, i.e., a large charge current coupled with a high TMR ratio.
机译:理论上研究了通过稀磁半导体量子点(QD)的自旋相关输运,该量子点通过磁隧道结耦合到两个铁磁引线。考虑非共线系统,其中QD相对于引线的磁化强度以任意角度磁化。通过Keldysh非平衡格林函数(NEGF)形式主义,在相干状态下计算隧道电流,将电子-电子相互作用纳入QD。我们为非共线DMS量子点系统的格林函数提供了第一个解析解决方案,该问题通过Hartree-Fock近似下的运动方程式求解。针对不同的电压状态评估了传输特性(电荷和自旋电流以及隧道磁阻(TMR))。自旋相关的隧穿效应和单电荷效应之间的相互作用导致了自旋和充电电流特性中的三个不同的电压状态。 QD被单独占据的电压范围对应于最大自旋电流和自旋电流对QD磁化取向的最大灵敏度。 QD设备还显示了适合传感器应用的传输功能,即大充电电流和高TMR比。

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