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Rational design of double-negative metamaterials consisting of 3D arrays of two different non-metallic spheres arranged on a simple tetragonal lattice

机译:双负超材料的合理设计,该超负材料由布置在简单四边形晶格上的两个不同非金属球的3D阵列组成

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Non-metallic, low-loss double-negative (DNG) metamaterials can be formed by three-dimensional (3D) arrays of two different non-metallic spheres arranged on a simple tetragonal lattice. Such DNG metamaterials have recently been found to provide DNG bandwidths of 10% through 3D arrays of two different dielectric spheres, and of 18% through 3D arrays of dielectric and magnetic spheres. However, a method of rational design of these DNG metamaterials has not yet been presented. This paper develops a design procedure based on the theoretical description of traveling waves supported by the 3D arrays. Analytical calculations of k-β (dispersion) diagram and effective constitutive parameters of several DNG metamaterials designed using this rule are presented.
机译:非金属,低损耗双负(DNG)超材料可以由排列在简单四边形晶格上的两个不同非金属球的三维(3D)阵列形成。最近发现,这种DNG超材料通过两个不同的介电球的3D阵列提供10%的DNG带宽,通过介电和磁球的3D阵列提供18%的DNG带宽。但是,尚未提出合理设计这些DNG超材料的方法。本文基于3D阵列支持的行波的理论描述,开发了一种设计程序。给出了使用该规则设计的几种DNG超材料的k-β(色散)图和有效本构参数的解析计算。

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