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Homogenization of a Dielectric Mixture with Anisotropic Spheres in AnisotropicBackground

机译:各向异性背景下各向异性球介电混合物的均匀化

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The paper treats the problem of calculating the macroscopic effective propertiesof dielectric mixtures where both the inclusions and the background medium can be anisotropic. For this homogenization process, the Maxwell Garnett -type approach is used where the inclusions are assumed to be spherical and embedded in a homogeneous background medium. The anisotropy of the background medium has to be described with a symmetric permittivity dyadic but the inclusion may be fully anisotropic, in other words the inclusion permittivity dyadic can contain an antisymmetric component. The effect of the anisotropy of the background is such that the depolarization factors of the spheres become different in different directions, even if the geometry isisotropic. The effect has to be taken into account for the calculation of the polarizability dyadic. As an example, numerical values are calculated for the case of gyrotropic spheres in anisotropic environment, both for the polariability and effective permittivity dyadics.

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