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The double resonant enhancement of optical second harmonic susceptibility in the compositionally asymmetric coupled quantum well

机译:成分不对称耦合量子阱中光学二次谐波磁化率的双共振增强

摘要

[[abstract]]The second harmonic suceptibility due to the intersubband transitions in the three-level GaAs/AlxGa1-xAs/AlyGa1-yAs compositionally asymmetric coupled quantum well (CACQW) under the influence of the applied electric field is investigated theoretically. The subband eigenenergy E(n) of the CACQOW structure could he designed to form an equally spaced energy-level ladder. Since the eigenenergy spacing could be designed to resonate with the pumping source, the second harmonic susceptibility could be greatly enhanced through the double resonance. Based on the theoretical calculations, the second harmonic susceptibility as high as 220 nm/V can be achieved for the CACQW. This is a more than three orders of magnitude enhancement as compared to that of the bulk GaAs. In addition to the design of CACQW structure, the double resonance can also be achieved by biasing the CACQW under a proper electric field. The extinguishment of the second order nonlinear optical effect by the applied electric field has also been studied. This phenomenon is attributed to the symmetry restoration of envelope wave functions of the CACQW structures under the quenching electric field C(off). A simple physical model to estimate the C(off) has also been developed.
机译:[[摘要]]研究了在施加电场的影响下,三能级GaAs / AlxGa1-xAs / AlyGa1-yAs成分不对称耦合量子阱(CACQW)中由于子带间跃迁而引起的二次谐波敏感性。 CACQOW结构的子带本征能E(n)可以设计成形成等距的能级阶梯。由于本征能间隔可以设计成与泵浦源共振,因此通过二次共振可以大大提高二次谐波敏感性。根据理论计算,CACQW的二次谐波磁化率可达到220 nm / V。与块状砷化镓相比,增加了三个数量级以上。除了CACQW结构的设计外,还可以通过在适当的电场下偏置CACQW来实现双共振。还研究了通过施加电场消除二阶非线性光学效应的方法。这种现象归因于在淬灭电场C(off)下CACQW结构的包络波函数的对称恢复。还开发了一种简单的物理模型来估算C(off)。

著录项

  • 作者

    Lien Chenhsin;

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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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