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Second-Order Procedure for Modeling Dielectric Material Interfaces in Structured Nonorthogonal Finite-Difference Discretizations of Maxwell's Equations

机译:Maxwell方程的结构化非正交有限差分离散化中介电材料界面建模的二阶程序

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摘要

Structured nonorthogonal finite-difference discretizations of Maxwell's equations are often employed to incorporate curved dielectric material interfaces. As part of this process, it is necessary to employ an adequate procedure to enforce the tangential field continuity conditions at the locations of the interfaces where the components of the permittivity tensor are discontinuous. This contribution proposes a second-order domain-splitting procedure that can accomplish this task without assuming that the permittivity tensor components are piecewise constant or diagonal. As explained, this feature is needed to exploit the full geometrical flexibility of structured grid generation. The proposed domain-splitting procedure consistently yields a global error that is second-order accurate even in extreme cases where the components of the permittivity tensor have a change of sign or a sharp jump.
机译:麦克斯韦方程组的结构化非正交有限差分离散化通常用于合并弯曲的介电材料界面。作为此过程的一部分,有必要采用适当的过程在介电常数张量的分量不连续的界面位置强制切线场连续性条件。该贡献提出了一种二阶域分裂过程,该过程可以完成此任务而无需假设介电常数张量是分段恒定或对角线。如所解释的,需要利用此功能来利用结构化网格生成的全部几何灵活性。即使在介电张量的分量具有符号变化或急剧跳变的极端情况下,所提出的域分裂过程始终会产生二阶精度的全局误差。

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