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Electromagnetic mixing laws: A supersymmetric approach

机译:电磁混合定律:超对称方法

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In this article we address the old problem of finding the effective dielectric constant of materials described either by a local random dielectric constant, or by a set of non-overlapping spherical inclusions randomly dispersed in a host. We use a unified theoretical framework, Such that all the most important Electromagnetic Mixing Laws (EML) can be recovered as the first iterative step of a family of results, thus opening the way to future improvements through the refinements of the approximation schemes. When the material is described by a set of immersed inclusions characterized by their spatial correlation functions, we exhibit an EML which, being featured by a minimal approximation scheme, does not come from the multiple scattering paradigm. It is made of a pure Hori-Yonezawa formula, corrected by a power series of the inclusion density. The coefficients of the latter, which are given as sums of standard diagrams, are recast into electromagnetic quantities which calculation is amenable numerically thanks to codes available on the web. The methods used and developed in this work are generic and can be used in a large variety of areas ranging from mechanics to thermodynamics.
机译:在本文中,我们解决了一个古老的问题,即通过局部随机介电常数或通过随机分散在主体中的一组非重叠球形夹杂物来找到描述的材料的有效介电常数。我们使用统一的理论框架,以便可以将所有最重要的电磁混合定律(EML)作为一系列结果的第一步进行迭代,从而为通过改进近似方案而进行的未来改进开辟了道路。当用一组以它们的空间相关函数为特征的沉浸夹杂物描述材料时,我们表现出的EML以最小逼近方案为特征,而并非来自多重散射范式。它由纯的Hori-Yonezawa公式制成,并通过夹杂物密度的幂级数进行了校正。后者的系数(以标准图的总和给出)被重新转换为电磁量,这要归功于网络上可用的代码,在数值上可以进行计算。在这项工作中使用和开发的方法是通用的,可以在从机械到热力学的许多领域中使用。

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