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Nonlinear generalized source method for modeling second-harmonic generation in diffraction gratings

机译:衍射光栅二次谐波产生的非线性广义源方法

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摘要

We introduce a versatile numerical method for modeling light diffraction in periodically patterned photonic structures containing quadratically nonlinear non-centrosymmetric optical materials. Our approach extends the generalized source method to nonlinear optical interactions by incorporating the contribution of nonlinear polarization sources to the diffracted field in the algorithm. We derive the mathematical formalism underlying the numerical method and introduce the Fourier-factorization suitable for nonlinear calculations. The numerical efficiency and runtime characteristics of the method are investigated in a set of benchmark calculations. The results corresponding to the fundamental frequency are compared to those obtained from a reference method and the beneficial effects of the modified Fourier-factorization rule on the accuracy of the nonlinear computations is demonstrated. To illustrate the capabilities of our method, we employ it to demonstrate strong enhancement of second-harmonic generationon one-and two-dimensional optical gratings resonantly coupled to a slab waveguide. Our method can be easily extended to other types of nonlinear optical interactions by simply incorporating the corresponding nonlinear polarization sources in the algorithm. (C) 2015 Optical Society of America
机译:我们介绍了一种通用的数值方法,用于建模包含二次非线性非中心对称光学材料的周期性图案化光子结构中的光衍射。我们的方法通过将非线性偏振源对衍射场的贡献纳入算法,将广义源方法扩展到非线性光学相互作用。我们推导了数值方法基础上的数学形式主义,并介绍了适用于非线性计算的傅里叶因式分解。在一组基准计算中研究了该方法的数值效率和运行时间特性。将与基本频率相对应的结果与从参考方法获得的结果进行比较,并证明了改进的傅里叶因式分解规则对非线性计算精度的有益影响。为了说明我们方法的功能,我们用它来证明共振耦合到平板波导的一维和二维光栅上二次谐波产生的增强。通过将相应的非线性偏振源简单地合并到算法中,我们的方法可以轻松地扩展到其他类型的非线性光学相互作用。 (C)2015年美国眼镜学会

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