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Tunable photonic crystal filter with dispersive and non-dispersive chiral rods

机译:具有分散和非分散手性杆的可调谐光子晶体滤波器

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摘要

Applying the finite element method, microcavity photonic crystal filter with chiral rods is studied and tuning of its bandwidth and transmission peak under system's stability condition is discussed. In order to study the tunability of this structure, the effects of variation in its rods electromagnetic parameters on its filtering operation are analyzed. It is shown that the increase in the rods' relative permittivity cause the increase of bandwidth and transmission peak, and also decrease the photonic band gap width. On the other hand, the increase in the rods' relative permeability cause the decrease of bandwidth and transmission peak, and also increase the photonic band gap width. In both cases, peak wavelength red shift occurs. The effects of rods chirality on filtering characteristics are studied. The real and imaginary terms of chirality is introduced respectively as a cause for worsening and bettering filtering nature of chiral photonic crystal, while they do not have effect on peak wavelength and photonic band gap. The effect of dispersive chirality model parameters on structure filtering is discussed and a design of chiral photonic crystal filters with appropriate high peak amplitude and small bandwidth in optical integrated circuits is proposed.
机译:应用有限元方法,研究了带有手征棒的微腔光子晶体滤波器,并讨论了在系统稳定条件下其带宽和传输峰的调谐。为了研究该结构的可调谐性,分析了其杆电磁参数的变化对其过滤操作的影响。结果表明,棒的相对介电常数的增加导致带宽和透射峰的增加,并且还减小了光子带隙宽度。另一方面,棒的相对磁导率的增加导致带宽和透射峰的减小,并且还增加了光子带隙宽度。在这两种情况下,都会出现峰值波长红移。研究了棒的手性对过滤特性的影响。分别介绍了手性的实部和虚部,这是导致手性光子晶体恶化和改善滤光特性的原因,而它们对峰值波长和光子带隙没有影响。讨论了色散手性模型参数对结构滤波的影响,提出了光集成电路中具有适当高峰值幅度和小带宽的手性光子晶体滤波器的设计。

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