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首页> 外文期刊>Communications in Theoretical Physics >Studies on the Second-Order Nonlinear Optical Properties of Parabolic and Semi-parabolic Quantum Wells with Applied Electric Fields
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Studies on the Second-Order Nonlinear Optical Properties of Parabolic and Semi-parabolic Quantum Wells with Applied Electric Fields

机译:带电场的抛物线和半抛物线量子阱的二阶非线性光学性质研究

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摘要

Within the framework of compact density matrix approach and iterative procedure, a detailed procedure for the calculation of the second-harmonic generation (SHG) 'susceptibility tensor is given in the electric-field-biased parabolic and semi-parabolic quantum wells (QWs). The simple analytical formula for the SHG susceptibility in the systems is also deduced. Numerical results on typical AlGaAs/GaAs materials show that, for the same effective width, the SHG susceptibility in semi-parabolic QW is larger than that in parabolic QW due to the self-asymmetry of the semi-parabolic QW, and the applied electric Geld can make the SHG susceptibilities in both systems enhance remarkably. Moreover, the SHG susceptibility is also related to the parabolic confinement frequency and the relaxation rate of the systems.
机译:在紧凑密度矩阵方法和迭代程序的框架内,在电场偏置的抛物线和半抛物线量子阱(QW)中给出了计算第二谐波产生(SHG)磁化率张量的详细程序。还推导了系统中SHG敏感性的简单分析公式。在典型的AlGaAs / GaAs材料上的数值结果表明,在相同有效宽度下,由于半抛物线形量子阱的自对称性以及所施加的电凝胶,半抛物线形量子阱的SHG敏感性大于抛物线形量子阱的SHG敏感性。可以使两个系统中的SHG敏感性显着提高。此外,SHG敏感性还与抛物线约束频率和系统的松弛率有关。

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