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The Enhanced Stark Effects of Coupled Quantum Wells and their Application to Tunable IR Photodetectors

机译:耦合量子阱的增强斯塔克效应及其在可调谐红外光电探测器中的应用

摘要

[[abstract]]A tunable asymmetric coupled quantum well far-infrared photodetector is proposed in this paper. The basic asymmetric coupled quantum wells are composed of two quantum wells separated by a thin barrier. In this way, the electron in each well interacts strongly with other electrons to achieve a large Stark tuning effect. The eigenenergies and the wave functions of the quantum-well structures are solved by the self-consistent method, and the effect of the exchange interaction on the ground-state subband has also been taken into account. The absorption coefficient is evaluated by the density-of-states formalism. Based on theoretical calculations, tuning ranges from 8.2 to 11.3 mum and 7.8 to 10.5 mum are predicted for the proposed asymmetric coupled-quantum-well structure and high-low coupled-quantum-well structure, respectively. This tuning capability is achieved by varying the applied electric field in the 20-90-kV/cm range.
机译:[[摘要]]本文提出了一种可调谐的非对称耦合量子阱远红外光电探测器。基本的非对称耦合量子阱由被薄壁垒隔开的两个量子阱组成。这样,每个阱中的电子与其他电子发生强烈相互作用,从而实现较大的Stark调谐效果。通过自洽方法求解了量子阱结构的本征能和波函数,并考虑了交换相互作用对基态子带的影响。吸收系数通过状态密度形式主义进行评估。根据理论计算,预计非对称耦合量子阱结构和高-低耦合量子阱结构的调谐范围分别为8.2至11.3 mum和7.8至10.5 mum。通过在20-90kV / cm的范围内改变施加的电场来实现这种调谐能力。

著录项

  • 作者

    Huang Yimin;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 [[iso]]en
  • 中图分类

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