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An overlapping Yee finite-difference time-domain method for material interfaces between anisotropic dielectrics and general dispersive or perfect electric conductor media

机译:一种重叠的yee有限差分时间域方法,用于各向异性电介质和一般色散或完美电导介质之间的材料界面

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摘要

A novel stable anisotropic finite-difference time-domain (FDTD) algorithm based on the overlapping cells is developed for solving Maxwell's equations of electrodynamics in anisotropic media with interfaces between different types of materials, such as the interface between anisotropic dielectrics and dispersive medium or perfect electric conductor (PEC). The previous proposed conventional anisotropic FDTD methods suffer from the late-time instability due to the extrapolation of the field components near the material interface. The proposed anisotropic overlapping Yee FDTD method is stable, as it relies on the overlapping cells to provide the collocated field values without any interpolation or extrapolation. Our method has been applied to simulate electromagnetic invisibility cloaking devices with both anisotropic dielectrics and PEC included in the computational domain. Numerical results and eigenvalue analysis confirm that the conventional anisotropic FDTD method is weakly unstable, whereas our method is stable. Copyright (c) 2013 John Wiley & Sons, Ltd.
机译:基于重叠电池的新型稳定的各向异性有限差分时间域(FDTD)算法用于在各向异性介质中用不同类型材料之间的界面求解麦克斯韦的电动力学方程,例如各向异性电介质和分散介质之间的界面或完美的界面电导(PEC)。先前提出的常规各向异性FDTD方法由于材料界面附近的现场部件的推断而受到后稳定性的。所提出的各向异性重叠yee FDTD方法是稳定的,因为它依赖于重叠的细胞,以提供没有任何插值或外推的并置场值。我们的方法已应用于模拟电磁隐形装置,其中包括计算域中的各向异性电介质和PEC。数值结果和特征值分析证实,传统的各向异性FDTD方法是弱不稳定的,而我们的方法是稳定的。版权所有(c)2013 John Wiley&Sons,Ltd。

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