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BI-FDTD: a novel finite-difference time-domain formulation for modeling wave propagation in bi-isotropic media

机译:BI-FDTD:一种新型的时域有限差分法,用于在双各向同性介质中模拟波传播

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This paper presents a newly developed finite-difference time-domain (FDTD) technique, referred to as BI-FDTD, for modeling electromagnetic wave interactions with bi-isotropic (BI) media. The theoretical foundation for the BI-FDTD method will be developed based on a wavefield decomposition. The main advantage of this approach is that the two sets of wavefields are uncoupled and can be viewed as propagating in an equivalent isotropic medium, which makes it possible to readily apply conventional FDTD analysis techniques. The BI-FDTD scheme will also be extended to include the dispersive nature of chiral media, an important subclass of bi-isotropic media. This extension represents the first of its kind in the FDTD community. Validations of this new model are demonstrated for a chiral half-space and a chiral slab.
机译:本文提出了一种新的有限差分时域(FDTD)技术,称为BI-FDTD,用于建模电磁波与双各向同性(BI)介质的相互作用。 BI-FDTD方法的理论基础将基于波场分解得到发展。这种方法的主要优点是两组波场是不耦合的,可以视为在等效的各向同性介质中传播,这使得可以轻松地应用常规FDTD分析技术。 BI-FDTD方案还将扩展到包括手性介质的分散性质,手性介质是双各向同性介质的重要子类。此扩展名是FDTD社区中的此类扩展。该新模型的验证已针对手性半空间和手性平板进行了验证。

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