用不连续伽辽金时域方法模拟三维斜入射周期结构:理论和实践考虑

J. Viquerat, N. Schmitt, C. Scheid
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引用次数: 0

摘要

在这项工作中,我们专注于在不连续伽辽金时域(DGTD)框架中发展斜入射源的周期边界条件(PBC)的使用。而在时域有限差分(FDTD)方法的背景下,可以找到大量的文献,对于DGTD,报道这种方法的贡献量非常低。本文利用特征分析方法对连续系统进行了分析,补充了已有的利用场变换技术的文献,并给出了能量估计。此外,我们还研究了所得到的DGTD格式的离散稳定性。此外,还详细介绍了光源、观测值(反射率、透射率和衍射效率)以及在该框架中使用复频移完美匹配层(cfs - pml)。经过数值验证后,在纳米光子学的背景下,用Diogenes DGTD求解器(http://diogenes.inria.fr)考虑了两个现实的测试用例。
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Simulating 3D periodic structures at oblique incidences with discontinuous Galerkin time-domain methods: theoretical and practical considerations
In this work, we focus on the development of the use of Periodic Boundary Conditions (PBC) with sources at oblique incidence in a Discontinuous Galerkin Time Domain (DGTD) framework. Whereas in the context of the Finite Difference Time Domain (FDTD) methods, an abundant literature can be found, for DGTD, the amount of contributions reporting on such methods is remarkably low. In this paper, we supplement the existing references using the field transform technique with an analysis of the continuous system using the method of characteristics and provide an energy estimate. Furthermore, we also study the discrete stability of the resulting DGTD scheme. Additional details about sources, observables (reflectance, transmittance and diffraction efficiency), and the use of Complex Frequency-Shifted Perfectly-Matched Layers (CFS-PMLs) in this framework are also given. After numerical validations, two realistic test-cases are considered in the context of nanophotonics with the Diogenes DGTD solver (http://diogenes.inria.fr).
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