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Study of s-polarized photonic bandgap structure in three component optical fibonacci multilayers composed of nanoscale materials

机译:纳米级材料三组分光学斐波那契多层膜的s偏振光子带隙结构研究

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摘要

In this communication dispersion relation, reflection and transmission coefficient for quasiperiodic optical multilayers arranged according to the three-component Fibonacci rule is derived using transfer matrix method. In this work Fibonacci multilayers using three different photonic band gap (PBG) materials is designed and its photonic band gap structure is presented. Also, a detailed calculation for allowed and forbidden frequency bands for s-polarized radiation of light incident on these structures at various angles is presented. It is demonstrated that in case of s-polarized mode of radiation, widening in the band gap and frequency shifts occur as one moves towards the higher frequency region, which shows that such a multilayer can be used as an efficient polarizer. The effect of an imaginary value for the propagation vector Q on the existence of forbidden photonic bands in these lattices is also studied.
机译:在这种通信色散关系中,采用传递矩阵法推导了根据三分量斐波那契规则排列的准周期光学多层的反射和透射系数。本文设计了使用三种不同光子带隙(PBG)材料的斐波那契多层膜,并提出了其光子带隙结构。此外,还详细计算了以不同角度入射到这些结构上的光的 s 偏振辐射的允许和禁止频带。结果表明,在s偏振辐射模式下,当向更高频率区域移动时,带隙变宽和频移发生,这表明这种多层可以用作有效的偏振器。还研究了传播向量Q的虚值对这些晶格中禁止光子带存在的影响。

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