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基于有效介质理论的人工超材料中电磁行为的描述与解释。

Description and explanation of electromagnetic behaviors in artificial metamaterials based on effective medium theory.

作者信息

Liu Ruopeng, Cui Tie Jun, Huang Da, Zhao Bo, Smith David R

机构信息

Center for Computational Electromagnetics and the State Key Laboratory of Millimeter Waves, Department of Radio Engineering, Southeast University, Nanjing 210096, People's Republic of China.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Aug;76(2 Pt 2):026606. doi: 10.1103/PhysRevE.76.026606. Epub 2007 Aug 23.

Abstract

We present a general theory of effective media to set up the relationship between the particle responses and the macroscopic system behaviors for artificial metamaterials composed of periodic resonant structures. By treating the unit cell of the periodic structure as a particle, we define the average permittivity and permeability for different unit structures and derive a general form of discrete Maxwell's equations on the macroscale, from which we obtain different wave modes in metamaterials including the propagation mode, pure plasma mode, and resonant crystal band-gap mode. We explain unfamiliar behaviors of metamaterials from the numerical S parameter retrieval approach. The excellent agreement between theoretical predictions and retrieval results indicates that the defined model and method of analysis fit the physical structures very well. Thereafter, we propose a more advanced form of the fitting formulas for the effective electromagnetic parameters of metamaterials.

摘要

我们提出了一种有效介质的通用理论,以建立由周期性谐振结构组成的人工超材料的粒子响应与宏观系统行为之间的关系。通过将周期性结构的单元胞视为一个粒子,我们定义了不同单元结构的平均介电常数和磁导率,并推导了宏观尺度上离散麦克斯韦方程组的一般形式,从中我们获得了超材料中的不同波模,包括传播模、纯等离子体模和谐振晶体带隙模。我们从数值S参数反演方法解释了超材料不常见的行为。理论预测与反演结果之间的良好一致性表明,所定义的模型和分析方法与物理结构非常吻合。此后,我们提出了一种更先进的超材料有效电磁参数拟合公式形式。

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