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Nonasymptotic homogenization of periodic electromagnetic structures: Uncertainty principles

机译:周期电磁结构的非渐近均匀化:不确定性原理

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摘要

We show that artificial magnetism of periodic dielectric or metal/dielectric structures has limitations and is subject to at least two "uncertainty principles." First, the stronger the magnetic response (the deviation of the effective permeability tensor from identity), the less accurate ("certain") the predictions of any homogeneous model. Second, if the magnetic response is strong, then homogenization cannot accurately reproduce the transmission and reflection parameters and, simultaneously, power dissipation in the material. These principles are general and not confined to any particular method of homogenization. Our theoretical analysis is supplemented with a numerical example: a hexahedral lattice of cylindrical air holes in a dielectric host. Even though this case is highly isotropic, which might be thought of as conducive to homogenization, the uncertainty principles remain valid.
机译:我们表明,周期性电介质或金属/电介质结构的人工磁性具有局限性,并且受制于至少两个“不确定性原理”。首先,磁响应越强(有效磁导率张量与同一性的偏差),任何均质模型的预测就越不准确(“确定”)。其次,如果磁响应很强,则均匀化将无法准确地再现透射和反射参数,同时也无法准确再现材料中的功耗。这些原理是通用的,不限于任何特定的均质化方法。我们的理论分析辅以一个数字示例:电介质主体中圆柱形气孔的六面体晶格。即使这种情况是高度各向同性的,可能被认为有助于均匀化,但不确定性原理仍然有效。

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  • 来源
    《Physical review》 |2016年第2期|024418.1-024418.10|共10页
  • 作者单位

    Department of Electrical and Computer Engineering, The University of Akron, Ohio 44325-3904, USA;

    Aix-Marseille Universite, CNRS, Centrale Marseille, Institut Fresnel UMR 7249, 13013 Marseille, France;

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