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On the dispersion relation in metamaterials - an analyticalapproach

机译:关于超材料中的分散关系 - Analytical Preach

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An analytical description for plane wave propagation in metamaterials (MM) is presented. It follows the usual approach for describing light propagation in homogenous media on the basis of Maxwell's equations, though applied to a medium composed of metallic nanostructures. Here, as an example, these nanostructures are double (or cut) wires. In the present approach the multipole expansion technique is used to account for the electric and magnetic dipole as well as the electric quadrupole moments of the carrier distribution within the nanostructure where a model of coupled oscillators is used for the description of the internal charge density dynamics. It is shown how expressions for the effective permittivity and permeability can be derived from analytical expressions for the dispersion relation, the magnetization and the electric displacement field. Results of the analytical model are compared with rigorous simulations of Maxwell's equations yielding the limitations and applicability of the proposed model.
机译:提出了用于超材料(mm)中的平面波传播的分析描述。它遵循了在麦克斯韦方程的基础上描述均匀介质中光传播的通常方法,但施加到由金属纳米结构组成的介质。这里,作为示例,这些纳米结构是双(或切割的)线。在本方法中,多极膨胀技术用于考虑电磁偶极子以及纳米结构内的载波分布的电动四极矩片,其中耦合振荡器模型用于描述内部电荷密度动态。示出了如何从用于分散关系,磁化和电移场的分析表达式导出有效介电常数和渗透性的表达式。将分析模型的结果与Maxwell方程的严格模拟进行了比较,从而产生了所提出的模型的局限性和适用性。

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