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Implementation of General Dispersive Anisotropic Materials in Lebedev FDTD

机译:Lebedev FDTD中通用色散各向异性材料的实现

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摘要

A variant of the finite-difference time-domain (FDTD) algorithm—the Lebedev FDTD method—is augmented to allow for the simulation of electromagnetic waves in general dispersive anisotropic materials. Distinct dispersions may be applied to each of the principal axes of the anisotropic medium. The method is based on the auxiliary differential equation and is simple to implement. Because of the collocated nature of the algorithm, multiterm dispersions necessary in previous implementations are avoided. Lebedev grid has previously been studied in detail by different research groups for the simulation of anisotropy. In this paper, we specifically focus on extending frequency-dispersive materials to this method and provide multiple examples to demonstrate the accuracy, validity, and stability of the method.
机译:有限差分时域(FDTD)算法的一种变体(即Lebedev FDTD方法)得到了增强,可以模拟普通色散各向异性材料中的电磁波。可以将不同的分散体施加到各向异性介质的每个主轴上。该方法基于辅助微分方程,易于实现。由于算法的并置性质,避免了先前实现中必需的多项式离散。 Lebedev网格先前已由不同的研究小组进行了详细的研究,以用于各向异性模拟。在本文中,我们特别关注于将频率分散材料扩展到该方法,并提供了多个示例来证明该方法的准确性,有效性和稳定性。

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