Metamaterials and the homogenization of composite materials

W.T. Perrins, R.C. McPhedran
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引用次数: 21

Abstract

Metamaterials and photonic crystals are often distinguished by the requirement that the former have features fine compared with the wavelength, and thus be homogenizable. We discuss the assumption implicit in this: that the metamaterial microstructure have well defined effective dielectric constant and magnetic permeability (concentrating on the former case). We illustrate subtleties in the calculation of effective dielectric constant in the particular case of square prisms composed of dielectric arranged in a square array in a host medium of another dielectric constant, commenting on poles, zeros, essential singularities and branch cuts of the effective dielectric constant function.

超材料与复合材料的均质化
超材料和光子晶体的区别往往在于前者的特征要比波长细,因此要均匀化。我们讨论了其中隐含的假设:超材料微观结构具有良好定义的有效介电常数和磁导率(集中在前一种情况下)。我们说明了在另一个介电常数的主介质中以正方形阵列排列的介电组成的方形棱镜的特殊情况下,有效介电常数的计算中的微妙之处,评论了有效介电常数函数的极点、零点、本质奇点和分支切断。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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