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Unbounded and scattered field representations of the Dyadic Green'sfunctions for planar stratified bianisotropic media

机译:平面分层双各向异性介质中Dyadic Green函数的无界和分散场表示

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This paper presents a rigorous formulation of the spectral-domain dyadic Green's functions for planar stratified bianisotropic media. The media may consist of any number of layers bounded by optional impedance/admittance walls. Both electric and magnetic dyadic Green's functions for arbitrary field and source locations are derived simultaneously. Based on the principle of scattering superposition, these dyadics are decomposed into unbounded and scattered parts. The scattered dyadic Green's functions are determined without cumbersome operations using the concepts of effective reflection and transmission of outward-bounded and inward-bounded waves. The scattering coefficient matrices are expressed in compact and convenient forms involving global reflection and transmission matrices. Corresponding to the impedance/admittance boundary walls, the global reflection matrices are related directly to the wall impedance/admittance dyadics. For illustration, the general expressions of dyadic Green's functions are applied to the configuration of a grounded bianisotropic slab embedded in isotropic halfspace
机译:本文为平面分层的各向异性介质提出了谱域二进格林函数的严格表示。介质可以由任意数量的由可选阻抗/导纳壁界定的层组成。同时得出任意场和源位置的电和磁二进力格林函数。根据散射叠加原理,这些二元分解分解为无边界和分散的部分。使用有效反射和透射外向和内向波的概念,无需进行繁琐的操作即可确定散乱的格林函数。散射系数矩阵以紧凑且方便的形式表示,涉及全局反射和透射矩阵。对应于阻抗/导纳边界壁,整体反射矩阵直接与壁阻抗/导纳二元关系。为了说明,将二进格林函数的一般表达式应用于嵌入各向同性半空间中的接地双同性平板的构造

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