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Three-dimensional analysis of a hybrid photonic crystal-conventional waveguide 90° bend

机译:混合光子晶体-常规波导90°弯曲的三维分析

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摘要

We present a three-dimensional (3D) analysis of a hybrid photonic crystal-conventional waveguide 90° bend proposed previously [Opt. Express 10, 1334 (2002)] as an ultracompact component for large-scale planar lightwave circuit integration. Both rigorous 3D finite-difference time-domain modeling and a simple perfect mirror model analysis were carried out for different Si post heights in the photonic crystal region. Results show that the bend efficiency increases rapidly with Si post height. For a post height of 6.5 μm, this structure yields a bend efficiency of 97.3% at a wavelength of 1.55 μm for 90° bends in 2 μm×2 μm square channel conventional waveguides with a refractive index contrast of 3.55%, which is very close to the bend efficiency of 98.2% for the corresponding two-dimensional problem. Our 3D analysis permits the examination of issues such as out-of-plane scattering loss and the effects of finite Si post height that are not considered in two dimensions.
机译:我们提出了先前提出的混合光子晶体-常规波导90°弯曲的三维(3D)分析。 Express 10,1334(2002)]作为用于大规模平面光波电路集成的超紧凑组件。针对光子晶体区域中不同的硅柱高度,进行了严格的3D有限差分时域建模和简单的完美镜像模型分析。结果表明,弯曲效率随硅柱高度的增加而迅速增加。对于6.5μm的柱高,此结构在2μm×2μm方波常规波导中90°弯曲时在1.55μm波长处产生97.3%的弯曲效率,其折射率对比度为3.55%,非常接近相应的二维问题的折弯效率为98.2%。我们的3D分析允许检查未在二维中考虑的问题,例如面外散射损耗和有限的Si柱高度影响。

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