首页> 外文期刊>Journal of Electronic Materials >Flat-Band Slow Light in a Photonic Crystal Slab Waveguide by Vertical Geometry Adjustment and Selective Infiltration of Optofluidics
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Flat-Band Slow Light in a Photonic Crystal Slab Waveguide by Vertical Geometry Adjustment and Selective Infiltration of Optofluidics

机译:通过垂直几何调整和选择性渗透光子晶体板波导的平带慢光

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摘要

In this paper, a photonic crystal slab waveguide (PhCSW) for slow light applications is presented. To obtain widest possible flat-bands of slow light regions-regions with large group index (n (g)), and very low group velocity dispersion (GVD)-two core parameters of PhCSW structure are investigated. The design procedure is based on vertical shifting of the first row of the air holes adjacent to the waveguide center and concurrent selective optofluidic infiltration of the second row. The criteria of +/- 10% variations is used for ease of definition and comparison of flat-band regions. By applying various geometry optimizations for the first row, our results suggest that a waveguide core of W (1.09) would provide a reasonable wide flat-band. Furthermore, infiltration of optofluidics in the second row alongside with geometry adjustments of the first row result in flexible control of 10 < n (g) < 32 and provide flat-band regions with large bandwidth (10 nm < Delta lambda < 21.5 nm). Also, negligible GVD as low as beta (2) = 10(-24) (s(2)/m) is achieved. Numerical simulations are calculated by means of the three-dimensional plane wave expansion method.
机译:本文提出了一种用于慢光应用的光子晶体板波导(PHCSW)。为了获得具有大组索引的最宽可能的慢光区域 - 具有大的群体索引(N(g))的区域,并且研究了PHCSW结构的非常低的组速度色散(GVD)-TWO核心参数。设计过程基于与波导中心相邻的第一排的第一行的垂直移位和第二排的并发选择性的选择性化学物流渗透。 +/- 10%变化的标准用于易于定义和平面区域的比较。通过对第一行应用各种几何优化,我们的结果表明W(1.09)的波导核心将提供合理的宽带带。此外,与第一行的几何调节一起渗透第二行中的透隙,其产生10

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