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Strong angular anisotropy of Voigt effect and other magneto-optical phenomena in ordered metal-dielectric metamaterials

机译:有序金属介电超材料中的Voigt效应和其他磁光现象的强角各向异性

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When an applied magnetic field has an arbitrary direction with respect to the lattice axes of a periodically microstructured or nanostructured metamaterial, the effective permittivity tensor of the metamaterial sample becomes anisotropic and all its components can be nonzero. This is true even if the microstructure has a high symmetry, e.g., cubic or triangular. It is found that the strong magneto-induced anisotropy which appears in the macroscopic response leads to an unusually strong anisotropic behavior of the Voigt effect and other magneto-optical effects.
机译:当施加的磁场相对于周期性微结构或纳米结构的超材料的晶格轴具有任意方向时,超材料样品的有效介电常数张量将变为各向异性,并且其所有分量可以为非零。即使微观结构具有高对称性,例如立方或三角形,也是如此。发现在宏观响应中出现的强磁感应各向异性导致了Voigt效应和其他磁光效应的异常强的各向异性行为。

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