Approaches to the Homogenization of Periodical Metamaterials

C. Simovski, I. Kolmakov, S. Tretyakov
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引用次数: 4

Abstract

Various metamaterials, very actively studied in recent years, usually consist of metal inclusions of complex shapes periodically arranged in space. If the period of the lattice and the dimensions of the inclusions are small compared with the wavelength, the material is usually considered as an effectively homogeneous medium characterized by effective material parameters (permittivity and permeability). The shape and dimensions of inclusions define the electromagnetic response, which may be rather exotic (negative material parameters, for example) and resonant response. Modelling of typical metamaterial samples with effective material parameters is a non-trivial task, where one has to face several complications as compared with the "usual" materials. These complications as well as various possible approaches to effective medium modelling will be discussed in this review presentation
周期超材料的均匀化方法
近年来研究非常活跃的各种超材料,通常由在空间中周期性排列的复杂形状的金属夹杂物组成。如果晶格的周期和夹杂物的尺寸与波长相比较小,则通常认为该材料是有效均匀介质,其特征是有效材料参数(介电常数和磁导率)。夹杂物的形状和尺寸决定了电磁响应,这可能是相当奇特的(例如负材料参数)和谐振响应。具有有效材料参数的典型超材料样品的建模是一项非平凡的任务,与“通常”材料相比,人们必须面对一些复杂的问题。这些复杂性以及各种可能的有效介质建模方法将在本综述报告中讨论
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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