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Anomalous absorption of electromagnetic waves in a layered structure with complex permittivities

机译:具有复杂介电常数的层状结构中电磁波的异常吸收

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摘要

It is shown theoretically that the absorptivity of bulk TE and TM electromagnetic waves by a thin layer with large complex dielectric permittivity has a strong (as much as 100%) maximum at an optimal layer thickness that is usually much smaller than the wavelength and the wave penetration depth (skin-depth) in the layer. The analysis is carried out in the frictional contact approximation, in which the layer can be replaced by a contact of the surrounding media with special boundary conditions that are analogous to the conditions at a contact with linear mechanical friction. The effects of a non-zero real part of the layer permittivity, and non-zero dissipation in the surrounding media on the anomalous absorption are investigated theoretically in detail. Simple analytical equations for the absorptivity maximum, optimal layer thickness and optimal incidence angles are derived and analysed. Differences in the anomalous absorption of TE and TM waves in layered structures with complex permittivities are described and explained from the physical point of view.
机译:理论上表明,具有大的复介电常数的薄层对大量TE和TM电磁波的吸收率在通常比波长和波小得多的最佳层厚度下具有很强的最大值(高达100%)。层中的渗透深度(皮肤深度)。该分析是在摩擦接触近似中进行的,其中可以通过周围介质与特殊边界条件的接触来代替该层,该特殊边界条件类似于与线性机械摩擦接触的条件。理论上详细研究了层介电常数的非零实部以及周围介质的非零耗散对异常吸收的影响。得出并分析了吸收率最大值,最佳层厚度和最佳入射角的简单解析方程。从物理角度描述和解释了具有复杂介电常数的层状结构中TE和TM波异常吸收的差异。

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