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Generation of pure spin currents via Auger recombination in quantum wells with Rashba splitting

机译:通过Rashba分裂在量子阱中通过俄歇复合产生纯自旋电流

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摘要

We propose a nonoptical mechanism for generating spin current via Auger recombination in semiconductor quantum wells (QWs) with spin-orbit splitting associated with structural QW asymmetry. It is shown that Auger recombination in narrow-bandgap semiconductors makes it possible to produce spin currents that exceed those that are obtained in the case of intraband as well as interband optical excitation. Analysis shows that the interference term in the expression for the Auger-recombination rate is responsible for the generation of spin currents.
机译:我们提出了一种非光学机制,可通过半导体量子阱(QW)中的俄歇复合并通过自旋轨道分裂产生与结构QW不对称相关的自旋电流来产生自旋电流。结果表明,窄带隙半导体中的俄歇复合使得产生的自旋电流超过在带内和带间光激发情况下获得的自旋电流成为可能。分析表明,俄歇复合率表达式中的干扰项负责产生自旋电流。

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