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Homogenization of waveguide-based metamaterials by energy averaging

机译:基于平均能量的波导基超材料的均质化

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摘要

We develop a homogenization technique based on electromagnetic energy averaging that is suitable for waveguide-based metamaterials. We first derive general homogenization formulations using Maxwell's equations and the Poynting theorem, and then apply the technique to a common waveguide-based metamaterial implementation consisting of layered media, yielding simple expressions for the effective permittivity and effective permeability of the waveguide based on energy-density-weighted averages of the local permittivity of the layers. Examples are presented in which we evaluate the effective parameters of ultrathin metal-clad waveguides sustaining a single surface-plasmon polariton mode, using realistic material parameters and geometries that have been recently explored in the literature.
机译:我们开发了一种基于电磁能量平均的均质化技术,适用于基于波导的超材料。我们首先使用麦克斯韦方程和Poynting定理推导一般的均质化公式,然后将该技术应用于由层状介质组成的基于波导的普通超材料实现中,得出基于能量密度的波导的有效介电常数和有效磁导率的简单表达式层的局部介电常数的加权平均值。提出了一些实例,其中我们使用了最近在文献中探讨过的实际材料参数和几何形状,来评估维持单表面等离子激元模式的超薄金属包覆波导的有效参数。

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