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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Effects of disorder on propagation losses and cavity Q-factors in photonic crystal slabs
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Effects of disorder on propagation losses and cavity Q-factors in photonic crystal slabs

机译:无序度对光子晶体平板中传输损耗和腔Q因子的影响

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摘要

A theoretical model of disorder for the etched holes or pillars in a generic two-dimensional photonic crystal slab is presented. This model is employed to calculate the effects of size disorder on propagation losses in linear photonic crystal waveguides as well as on quality (0-factors in photonic crystal nano-cavities. The main results obtained by the present theory and shown in this work are: (a) large single-mode bandwidth and low-loss (<0.1 dB/mm) propagation of light is predicted for increased-width membrane-type photonic crystal waveguides, (b) pillar-based lattices show reduced sensitivity to size fluctuations than hole-based ones, (c) the effects of disorder on cavity Q-factors are quantitatively evaluated. An extension of the model is also introduced in order to take into account the side-wall micro-roughness of the perfectly vertical holes, and preliminary results of this more general approach are discussed.
机译:提出了二维二维光子晶体平板中刻蚀孔或柱无序的理论模型。该模型用于计算尺寸紊乱对线性光子晶体波导中的传输损耗以及质量(光子晶体纳米腔中的0因子)的影响。通过本理论获得的主要结果是: (a)对于增加宽度的膜型光子晶体波导,预测到较大的单模带宽和低损耗(<0.1 dB / mm)的光传播,(b)基于柱的晶格对尺寸波动的敏感性比对孔的敏感性降低(c)定量评估了无序对腔Q因子的影响,并引入了该模型的扩展,以考虑完美垂直孔的侧壁微粗糙度和初步结果讨论了这种更通用的方法。

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