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Generalized decomposition of electromagnetic fields inbi-anisotropic media

机译:非各向异性介质中电磁场的广义分解

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TE/TM decomposition of electromagnetic fields, with respect to one special direction in space, is well known to be valid for fields in isotropic and uniaxially anisotropic media. The theory was recently generalized to bi-anisotropic media by defining the decomposition for linear combinations of electric and magnetic fields with respect to two vectors. In the present paper, the theory is further generalized by defining the decomposition with respect to four vectors (two six-vectors), which restrict the polarizations of the decomposed electromagnetic fields. It is shown that the class of bi-anisotropic media in which electromagnetic fields can be decomposed into two independent electromagnetic fields (a-field and b-field) is more general than in all previous decomposition theories. It is also shown that the decomposed a- and b-fields see the original bi-anisotropic medium as simpler equivalent ones (aand b-media) for which analytic Green dyadics were previously derived by these authors
机译:众所周知,相对于空间中的一个特定方向,电磁场的TE / TM分解对于各向同性和单轴各向异性介质中的场是有效的。通过定义相对于两个矢量的电场和磁场线性组合的分解,该理论最近被推广到双各向异性介质。在本文中,通过定义关于四个矢量(两个六个矢量)的分解来进一步推广该理论,这限制了分解的电磁场的极化。结果表明,与以往的所有分解理论相比,可将电磁场分解为两个独立的电磁场(a场和b场)的双各向异性介质类别更为广泛。还表明,分解后的a场和b场将原始的双各向异性介质视为较简单的等价介质(a和b介质),这些作者先前已对其进行了解析格林迪达斯分析。

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