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Novel Auxiliary Differential Equation-Multiresolution Time Domain Scheme for Dispersive Nonlinear Photonic Devices

机译:色散非线性光子器件的新型辅助微分方程-多分辨率时域方案

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摘要

In this paper, a novel multiresolution time-domain (MRTD) technique is presented for the analysis of second order nonlinearities in dispersive materials. The suggested method implements multiresolution analysis in the context of method-of-moments for the solution of Maxwell's equations. Based on Lorentz model of linear susceptibility, auxiliary differential equations (ADE) are successfully included in order to accurately account for the chromatic dispersion of the dielectric material. Finally, a uniaxial perfectly matched layers (UPML) absorber for MRTD is rigorously incorporated. Various numerical examples demonstrate the stability and numerical precision of the suggested nonlinear MRTD method and its improved numerical efficiency over conventional FDTD.
机译:本文提出了一种新颖的多分辨率时域(MRTD)技术,用于分析分散材料中的二阶非线性。所建议的方法在矩量法的上下文中对麦克斯韦方程组的解决方案进行了多分辨率分析。基于Lorentz线性磁化率模型,成功地包含了辅助微分方程(ADE),以便准确地解释介电材料的色散。最后,严格结合了用于MRTD的单轴完美匹配层(UPML)吸收器。各种数值示例证明了所建议的非线性MRTD方法的稳定性和数值精度,以及与常规FDTD相比提高的数值效率。

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