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A systematic and topologically stable conformal finite-difference time-domain algorithm for modeling curved dielectric interfaces in three dimensions

机译:一种系统的且拓扑稳定的共形有限差分时域算法,用于在三维中建模弯曲介电界面

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摘要

A systematic conformal finite-difference time-domain (FDTD) algorithm for the direct modeling of dielectric interfaces in three dimensions is presented in this paper. The straightforward procedure is based on the proper reformation of the grid cells in the vicinity of the dielectric surface, leading thus to the creation of five-faced prisms on the primary grid, apart from the standard hexagonal ones. The new scheme overcomes any topological deficiency that forbids the contour path FDTD and conformal FDTD technique to directly simulate dielectric boundaries, since it maintains the lattice duality. Therefore, no instabilities, even late-time ones, are observed. On the other hand, the accuracy obtained, even with very coarse meshes, is very good as is proved by the numerical analysis of various resonance problems.
机译:本文提出了一种用于三维介电界面直接建模的系统共形有限差分时域算法。简单的过程是基于在电介质表面附近对网格单元进行适当的重整,从而导致在主网格上除了标准的六边形棱镜之外还创建了五面棱镜。该新方案克服了任何拓扑缺陷,因为它们保留了晶格对偶性,因此禁止轮廓路径FDTD和保形FDTD技术直接模拟介电边界。因此,没有观察到不稳定,甚至是后期的不稳定。另一方面,通过对各种共振问题的数值分析证明,即使使用非常粗糙的网格,所获得的精度也非常好。

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