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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Theory of ultrafast nonlinear refraction in semiconductor superlattices
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Theory of ultrafast nonlinear refraction in semiconductor superlattices

机译:半导体超晶格中超快非线性折射的理论

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A theoretical study is undertaken into the Kerr nonlinear refraction observable in the transparency window in semiconductor heterostructures. Symmetry considerations indicate that the number of nonzero, independent tensor components increases from three to eight for single wavelength third-order nonlinear processes with the usual growth orientation. These are related to the observable phenomena of self-phase-modulation, cross-phase-modulation, and four-wave-mixing of the orthogonal polarization components in the usual waveguide geometry. For a 14:14 GaAs-AlAs superlattice, all eight independent elements are calculated. It is shown that the nonlinear response is highly anisotropic. The modification of the nonlinear coefficients with quantum well intermixing is investigated, with a several-fold reduction in value predicted. This modification could be exploited in some long-standing and novel nonlinear optical experiments.
机译:对半导体异质结构的透明窗口中可观察到的Kerr非线性折射进行了理论研究。对称性考虑因素表明,对于具有常规生长方向的单波长三阶非线性过程,非零,独立张量分量的数量从三个增加到八个。这些与通常的波导几何形状中的正交偏振分量的自相位调制,交叉相位调制和四波混合的可观察到的现象有关。对于14:14的GaAs-AlAs超晶格,将计算所有八个独立元素。结果表明,非线性响应是高度各向异性的。研究了通过量子阱混合对非线性系数的修正,并预测了数值的减小。这种修改可以在一些长期存在且新颖的非线性光学实验中加以利用。

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