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Extended theory of FDTD S- and P-eigenmodes in lossy media and its application to the analysis of coupled problems

机译:有损介质中FDTD S和P本征模的扩展理论及其在耦合问题分析中的应用

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FDTD solutions in lossy media are shown to comprise two orthogonal families of S- and P-eigenmodes. The S-modes are counterparts of physical waves, retaining their fundamental properties such as current continuity. Contrary to the lossless case, they are subject to bilateral dispersion, although the numerical anisotropy of the FDTD mesh is actually reduced. The P-modes do not propagate and decay exponentially in time. This makes Maxwell FDTD suitable for coupling with other physical solvers, which may change the electromagnetic media properties and boundaries in time. Any thus generated numerical changes are included in and dissipated by the P-modes.
机译:有损介质中的FDTD解决方案显示为包括两个正交的S本征模式和P本征模式。 S模式是物理波的对应物,保留了它们的基本特性,例如电流连续性。与无损情况相反,尽管FDTD网格的数值各向异性实际上已减小,但它们会受到双向色散的影响。 P模式不会随时间传播并呈指数衰减。这使Maxwell FDTD适合与其他物理求解器耦合,这可能会及时更改电磁介质的属性和边界。任何由此产生的数值变化都包含在P模式中并由P模式消散。

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