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Effect of the anisotropy of a conducting layer on the dispersion law of electromagnetic waves in layered metal-dielectric structures

机译:导电层的各向异性对层状金属电介质结构中电磁波色散规律的影响

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摘要

The dispersion laws of electromagnetic waves in layered periodic metal-dielectric structures with anisotropic metal layers have been theoretically analyzed. It has been found that the anisotropy of metal layers is responsible for the appearance of additional allowed energy bands for photons. It has been shown that these bands correspond to plasma (Langmuir) waves propagating in anisotropic metal layers of the structure. Conditions under which the directions of group and phase velocities of Langmuir waves coincide or are opposite have been determined. It has been shown that the penetration of the electromagnetic field of Langmuir waves into dielectric layers is exponentially weak and this field is primarily concentrated in metal layers, where it oscillates in the direction perpendicular to the plane of the layers.
机译:从理论上分析了电磁波在具有各向异性金属层的层状周期性金属介电结构中的色散规律。已经发现,金属层的各向异性导致出现了光子的附加允许能带。已经显示出这些带对应于在结构的各向异性金属层中传播的等离子体(Langmuir)波。确定了朗缪尔波的群速度和相速度的方向一致或相反的条件。已经表明,朗缪尔波的电磁场对电介质层的渗透指数弱,并且该场主要集中在金属层中,在垂直于层平面的方向上振荡。

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