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Detection and study of photo-generated spin currents in nonmagnetic semiconductor materials

机译:非磁性半导体材料中光生自旋电流的检测与研究

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摘要

The longitudinal current in Si-doped gallium arsenide was spin-polarized using circularly polarized light. The spin current was detected by the extraordinary Hall effect. An enhancement of Hall conductivity with increasing moderately Si-doping was found, indicating that the introduction of dopants increases the electronic spin polarization. This finding may provide an opportunity for controlling and manipulating nonmagnetic semiconductors via electron spin for operating device applications. Band energy calculations using pseudopotentials confirm the influence of Si content and electron-phonon interaction on the behaviour of the spin current and hence on the spin-dependent Hall voltage.
机译:硅掺杂砷化镓中的纵向电流采用圆偏振光进行自旋偏振。自旋电流通过非凡的霍尔效应进行检测。发现随着Si掺杂量的增加,霍尔电导率的增强表明掺杂剂的引入增加了电子自旋极化。这一发现可能为通过电子自旋控制和操纵非磁性半导体提供机会,用于操作设备应用。使用赝势的能带能量计算证实了硅含量和电子-声子相互作用对自旋电流行为的影响,从而对自旋相关的霍尔电压的影响。

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