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Application of transfer matrix method to second-harmonic generation in nonlinear photonic bandgap structures: oblique incidence

机译:传递矩阵法在非线性光子带隙结构二次谐波产生中的应用:斜入射

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摘要

Generalization of the transfer matrix method is developed to analyze Type I second-harmonic generation in linear-nonlinear multilayer one-dimensional photonic bandgap structures for oblique incidence of a nondepleted fundamental. The advantage of the transfer matrix method is that it takes into account reflections and interferences between all forward and backward propagating fundamental and second-harmonic waves. The conversion efficiency is calculated as a function of the incident angle of the fundamental and the thicknesses of the linear and nonlinear layers. Specific incident angles and thicknesses may generate relatively high conversion efficiency inside nonlinear material. Our analytical and numerical analyses show that the conversion efficiency of second-harmonic generation depends on the fundamental pump power, second-order susceptibility, and field enhancement in the photonic bandgap structure. Upper bounds on pump intensity can be found for a given incidence angle and sample thickness where the nondepleted pump approximation can be used to model such a nonlinear structure. (C) 2015 Optical Society of America
机译:发展了传递矩阵方法的一般性,以分析线性-非线性多层一维光子带隙结构中I型二次谐波的产生,以消除未耗尽基波的倾斜入射。传递矩阵法的优点在于,它考虑了所有正向和反向传播的基波和二次谐波之间的反射和干扰。根据基波的入射角以及线性和非线性层的厚度来计算转换效率。特定的入射角和厚度可能会在非线性材料内部产生相对较高的转换效率。我们的分析和数值分析表明,二次谐波产生的转换效率取决于基本的泵浦功率,二次磁化率以及光子带隙结构中的场增强。对于给定的入射角和样品厚度,可以找到泵浦强度的上限,在这种情况下,可以使用无损耗的泵浦近似值对这种非线性结构进行建模。 (C)2015年美国眼镜学会

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