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Reflection Coefficient of the Isotropic-Dispersion Finite-Difference Time-Domain (ID-FDTD) Method at Planar Dielectric Interfaces

机译:平面介电界面在平面电介质接口处的各向同性色散有限差时域(ID-FDTD)方法的反射系数

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This paper presents an analytical formulation of the numerical reflection coefficient of the ID-FDTD algorithm at planar dielectric boundaries for a TE wave incidence. The formulation is numerically verified. 1. INTRODUCTION The standard FDTD method (the Yee scheme) undergoes "numerical dispersion" that makes waves at different phase velocities, which prevents the Yee method from applied to large scale or phase-sensitive problems. Hence, several schemes have been proposed to rectify the numerical dispersion problem, one of which is the isotropic dispersion FDTD (ID-FDTD) scheme to drastically reduce the dispersion [1]. However, at the material interface, the behavior of the ID-FDTD scheme is not clearly characterized. Hence, this paper analytically obtains the numerical reflection coefficient of the ID-FDTD scheme for a TE polarized wave.
机译:本文介绍了TE波入射率平面介质边界ID-FDTD算法的分析制定。制剂在数值上验证。 1.简介标准FDTD方法(YEE方案)经历“数值分散”,其在不同的相速度下波动,这可以防止YEE方法应用于大规模或相敏感问题。因此,已经提出了几种方案来纠正数值分散问题,其中一个是各向同性的分散FDTD(ID-FDTD)方案,以大大减少分散体[1]。然而,在材料界面处,ID-FDTD方案的行为没有明确表征。因此,本文分析了TE偏振波ID-FDTD方案的数值反射系数。

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