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Electric-field enhancement and extinguishment of optical second-harmonic generation in asymmetric coupled quantum wells

机译:非对称耦合量子阱中光学二次谐波产生的电场增强和消灭

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摘要

The second-harmonic susceptibilities of asymmetric coupled quantum wells (ACQW) and compositionally asymmetric coupled quantum wells (CACQW) under the influence of the applied electric field are investigated theoretically. Analytic forms of the second-harmonic susceptibility are derived by using the density matrix formalism. Coupled one-dimensional Schrodinger equation and Poisson's equation are solved self-consistently to find the subband eigenenergies and the envelope wavefunctions for the ACQW and CACQW structures. Dipole moment matrix elements for the ACQW and CACQW are evaluated from the resulting envelope wavefunctions and large nonlinear optical effects are predicted for these two structures. Based on the theoretical calculations, the second-harmonic susceptibilities of 50 nm/V and 35 nm/V can be achieved for the ACQW and the CACQW, respectively. This is more than two orders of magnitude enhancement as compared to that of the bulk GaAs. By a suitable choice of the composition of CACQW, a novel structure which the second-order nonlinear optical effect can be turned on or off by the applied electric field is proposed based on the results of the theoretical calculation. This phenomenon is attributed to the symmetry restoration of envelope wavefunctions of the CACQW under the quenching electric field F/sub off/. A simple physical model to estimate the F/sub off/ has also been developed successfully.
机译:理论上研究了非对称耦合量子阱(ACQW)和成分非对称耦合量子阱(CACQW)在施加电场的影响下的二次谐波磁化率。通过使用密度矩阵形式主义推导了二次谐波磁化率的解析形式。自洽求解一维Schrodinger方程和Poisson方程,以找到ACQW和CACQW结构的子带本征能和包络波函数。从产生的包络波函数评估了ACQW和CACQW的偶极矩矩阵元素,并预测了这两种结构的大非线性光学效应。根据理论计算,ACQW和CACQW的二次谐波磁化率分别为50 nm / V和35 nm / V。与块状砷化镓相比,增加了两个数量级以上。通过合理选择CACQW的组成,根据理论计算结果,提出了一种新颖的结构,可以通过施加电场来开启或关闭二次非线性光学效应。该现象归因于在淬灭电场F / sub off /下CACQW的包络波函数的对称恢复。还成功开发了一种简单的物理模型来估算F / sub off /。

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