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An iterative finite difference beam propagation method for modeling second-order nonlinear effects in optical waveguides

机译:建模光波导中二阶非线性效应的迭代有限差分光束传播方法

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摘要

An iterative finite difference beam propagation method based on the Crank-Nicholson scheme is presented to simulate continuous wave (CW) second-order nonlinear effects in optical waveguides with the depletion of the pump wave taken into account. This method is an extension of the linear finite difference beam propagation method and preserves the same order of accuracy. Comparisons with the previously published explicit finite difference beam propagation method and the rectangular approximation method are presented. Quasi-phase matched difference frequency generation in AlGaAs and quasi-phase-matched second harmonic generation in LiNbO/sub 3/ are considered in the evaluation, showing that one iteration for the IFD-BPM is sufficient for the simulation with good accuracy and without increasing much computation time.
机译:提出了一种基于Crank-Nicholson方案的迭代有限差分光束传播方法,以模拟考虑了泵浦光损耗的光波导中的连续波(CW)二阶非线性效应。此方法是线性有限差分光束传播方法的扩展,并且保持相同的精度等级。与以前发表的显式有限差分光束传播方法和矩形近似方法进行了比较。在评估中考虑了AlGaAs中的准相位匹配差频生成和LiNbO / sub 3 /中的准相位匹配二次谐波生成,这表明IFD-BPM的一次迭代足以以良好的精度进行仿真,而不会增加大量的计算时间。

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