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Theory of magnetoelectric photocurrent generated by direct interband transitions in a semiconductor quantum well

机译:半导体量子阱中直接带间跃迁产生的磁电光电流理论

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摘要

A linearly polarized light normally incident on a semiconductor quantum well with spin-orbit coupling may generate pure spin current via direct interband optical transition. An electric photocurrent can be extracted from the pure spin current when an in-plane magnetic field is applied, which has been recently observed in the InGaAs/InAlAs quantum well. Here we present a theoretical study of this magnetoelectric photocurrent effect associated with the interband transition. By employing the density matrix formalism, we show that the photoexcited carrier density has an anisotropic distribution in k space, strongly dependent on the orientation of the electron wavevector and the polarization of the light. This anisotropy provides an intuitive picture of the observed dependence of the photocurrent on the magnetic field and the polarization of the light. We also show that the ratio of the pure spin photocurrent to the magnetoelectric photocurrent is approximately equal to the ratio of the kinetic energy to the Zeeman energy, which enables us to estimate the magnitude of the pure spin photocurrent. The photocurrent density calculated with the help of an anisotropic Rashba model and the Kohn-Luttinger model can produce all three terms in the fitting formula for measured current, with comparable order of magnitude, but discrepancies are still present and further investigation is needed. © 2011 American Physical Society.
机译:通常以自旋轨道耦合入射在半导体量子阱上的线偏振光可以通过直接的带间光学跃迁产生纯自旋电流。当施加面内磁场时,可以从纯自旋电流中提取光电流,这最近已在InGaAs / InAlAs量子阱中观察到。在这里,我们提出了一种与带间跃迁相关的磁电光电流效应的理论研究。通过采用密度矩阵形式,我们表明光激发的载流子密度在k空间中具有各向异性分布,强烈依赖于电子波矢量的方向和光的偏振。这种各向异性直观地显示了观察到的光电流对磁场和光偏振的依赖性。我们还表明,纯自旋光电流与磁电光电流之比大约等于动能与塞曼能量之比,这使我们能够估算纯自旋光电流的大小。借助各向异性Rashba模型和Kohn-Luttinger模型计算出的光电流密度可以在测量电流的拟合公式中生成所有三个项,并且数量级可比,但是差异仍然存在,需要进一步研究。 ©2011美国物理学会。

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