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A simple recipe for negatively refracting metamaterials via homogenization

机译:一种简单的配方,用于通过均质化呈现超材料

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A strategy for achieving negative phase velocity (NPV) in a homogenized composite material (HCM) involves constituent material phases that do not support NPV propagation. The HCM and its constituent phases are isotropic dielectric-magnetic materials. The real parts of their permittivities are negative-valued whereas the real parts of their permeabilities are positive-valued (or vice versa). The constituent material phases are randomly distributed as spherical particles. The Bruggeman homogenization formalism indicates that the HCM can support NPV propagation, the extended Bruggeman homogenization formalism suggests that increasing the dimensions of the constituent particles diminishes the scope for NPV propagation in the HCM, and the strong-permittivity-fluctuation theory further shows that the propensity of the HCM to support NPV propagation is sensitive to the distributional statistics of the constituent material particles and diminishes as the correlation length increases.
机译:在均质化复合材料(HCM)中实现负阶段速度(NPV)的策略涉及不支持NPV繁殖的组成材料相。 HCM及其组成阶段是各向同性介电磁性材料。它们的兴高力的真实部分是负值的,而他们的渗透率的实际部分是积极值的(反之亦然)。组成材料相随随机分布为球形颗粒。 Brugmeman均化形式表明HCM可以支持NPV繁殖,扩展Brugmeman均质形式正式表明,增加组成颗粒的尺寸减少了HCM中NPV繁殖的范围,并且强介电常数波动理论进一步表明倾向对于支持NPV传播的HCM对组成材料颗粒的分布统计而敏感,并且随着相关长度的增加而减小。

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