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A multiple scattering solution for the effective permittivity of a sphere mixture

机译:球形混合物有效介电常数的多重散射解决方案

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A recursive algorithm for calculating the exact solution of a random assortment of spheres is described. In this algorithm, the scattering from a single sphere is expressed in a one-sphere T matrix. The scattering from two spheres is expressed in terms of two-sphere T matrices, which are related to the one-sphere T matrix. A recursive algorithm to deduce the (n+1)-sphere T matrix from the n-sphere T matrix is derived. With this recursive algorithm, the multiple scattering from a random assortment of N spheres can be obtained. This results in an N/sup 2/ algorithm rather than the normal N/sup 3/ algorithm. As an example, the algorithm is used to calculate the low-frequency effective permittivity of a random assortment of 18 dielectric spheres. The effective permittivity deviates from the Maxwell-Garnett result for high contrast and high packing fraction. With a high packing fraction, dielectric enhancement at low frequency is possible.
机译:描述了一种用于计算球体随机分类的精确解的递归算法。在该算法中,单个球体的散射以单球体T矩阵表示。来自两个球体的散射用与一个球体T矩阵相关的两个球体T矩阵表示。推导了从n球体T矩阵推导(n + 1)球体T矩阵的递归算法。使用这种递归算法,可以获得来自N个球体的随机分类的多次散射。这导致了N / sup 2 /算法,而不是普通的N / sup 3 /算法。例如,该算法用于计算18个介电球的随机分类的低频有效介电常数。对于高对比度和高填充分数,有效介电常数与Maxwell-Garnett结果不同。通过高填充率,可以实现低频介电增强。

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