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Spin transport through a double quantum-dot system with tunable magnetic field

机译:通过具有可调磁场的双量子点系统进行自旋传输

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摘要

The spin transport in a double quantum-dot system with tunable magnetic field was investigated by non-equilibrium Green function method. For two unidentified quantum dots (QDs), it is found that in comparison with the situation without magnetic field on the QDs, the average spin occupations separate with the increase in the magnetic field, which resemble the behaviors as observed in a single-dot system, however, the magnetic field applied on them is only the tenth of that on single-dot system. On the other hand, for two identified QDs, the magnetic field has profound effect on the current for different spins in the QDs. Especially for different magnetic fields, the threshold voltage for up spin shifts higher as the difference increasing, while it for down spin is lower. In addition, the spin polarization of current presents correspondingly novel performances, such as, an unexpected dip. It is suggested that the system is a favorable candidate for spintronic devices or external field detectors.
机译:利用非平衡格林函数方法研究了具有可调磁场的双量子点系统中的自旋输运。对于两个未识别的量子点(QD),发现与在QD上没有磁场的情况相比,平均自旋占据随磁场的增加而分开,这类似于在单点系统中观察到的行为。但是,施加在它们上的磁场仅为单点系统的十分之一。另一方面,对于两个已识别的量子点,磁场对量子点中不同自旋的电流产生深远的影响。特别是对于不同的磁场,向上旋转的阈值电压随差值的增加而升高,而向下旋转的阈值电压则更低。另外,电流的自旋极化具有相应的新颖性能,例如意外的下降。建议该系统是自旋电子设备或外部场检测器的理想选择。

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