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Electric-field dependence of optical absorption properties in coupled quantum wells and their application to 1.3 µm optical modulator

机译:耦合量子阱中光吸收特性的电场依赖性及其在1.3 µm光调制器中的应用

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摘要

[[abstract]]A 1.3 µm modulator using light-hole–to-electron interband Stark shift in the lattice-matched AlInAs/GaInAs coupled quantum wells (CQWs) is investigated theoretically. The operation of this device is based on the lowest-energy absorption resonance corresponding to the first light-hole–to–electron transition (ELh1Ee1). The resonant nature of this process results in a sharp absorption peak when the incident photon energy is equal to the energy-level separation. This device utilizes the significant enhancement of the Stark effect on the electronic states and the strong field-dependence transition dipole moments. Under an applied electric field, the energy spacing between ELh1 and Ee1 changes due to the Stark shift. The contrast ratio can be improved from 8:1 for the symmetric CQW to as high as 20:1 for the proposed asymmetric CQW structure. These contrast ratios are achieved by varying the applied electric field in the 0–70 kV/cm range. This large variation of optical absorption at 1.3 µm is obtained both by the enhanced Stark shift and by varying the overlap between the hole and electron envelope wave functions with an applied electric field and Stark effect for the proposed AlInAs/GaInAs CQW system.
机译:[[摘要]]理论上研究了一种在晶格匹配的AlInAs / GaInAs耦合量子阱(CQWs)中使用光孔-电子带间斯塔克位移的1.3 µm调制器。该器件的工作基于与第一光孔-电子跃迁(ELh1Ee1)相对应的最低能量吸收共振。当入射光子能量等于能级间隔时,此过程的共振特性会导致尖锐的吸收峰。该装置充分利用了斯塔克效应对电子态的显着增强以及强大的场相关跃迁偶极矩。在施加电场的情况下,由于斯塔克位移,ELh1和Ee1之间的能量间隔发生变化。对比度可以从对称CQW的8:1提高到建议的非对称CQW结构的20:1。这些对比度是通过在0-70 kV / cm范围内改变施加的电场来实现的。对于建议的AlInAs / GaInAs CQW系统,通过增强的Stark位移以及通过改变空穴和电子包络波函数之间的重叠以及施加的电场和Stark效应,可以获得1.3 µm处较大的光吸收变化。

著录项

  • 作者

    Yimin Huang;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 [[iso]]en
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