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Investigating Photonic Bandgap Width for Metamaterial based PhC Structure from Dispersion Relation

机译:从色散关系研究基于超材料的PhC结构的光子带隙宽度

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Characteristic Lowest photonic bandgap width is analytically computed for double negative index materials from dispersion relation under propagation of TE wave. Three well-established metamaterials are considered for simulation purpose, and two lower photonic bandgaps are computed with varying incidence angle for a few materials. Results are compared with existing bandgap widths obtained for positive refractive indices based materials. Results suggest that negative index materials offer higher bandgap width than existing positive index materials, and hence may be considered as better candidate for optical filter design.
机译:根据双负折射率材料在TE波传播下的色散关系分析计算出最低光子带隙宽度。为了进行模拟,考虑了三种成熟的超材料,并针对几种材料以不同的入射角计算了两个较低的光子带隙。将结果与基于正折射率材料的现有带隙宽度进行比较。结果表明,负折射率材料比现有的正折射率材料具有更高的带隙宽度,因此可以被认为是光学滤波器设计的更好候选者。

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