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Modeling and design of waveguide-coupled single-mode microring resonators

机译:波导耦合单模微环谐振器的建模与设计

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Abstract: We discuss a first-order design tool for waveguide-coupled microring resonators based on an approximate solution of the wave propagation in a microring waveguide with micron-size radius of curvature and a large lateral index contrast. The model makes use of the conformal transformation method and a linear approximation of the refractive index profile, and takes into account the effect of waveguide thickness, dispersion, and diffraction. Based on this model, we develop general design rules for the major physical characteristics of a waveguide-coupled microring resonator, including the resonance wavelength, the free spectral range, the coupling ratio, the bending radiation loss and the substrate leakage loss. In addition, the physical model provides insights into alternative coupling designs that significantly increase the coupling length and reduce or eliminate the dependence on a narrow air gap in the waveguide-coupled microring resonator. We present two examples, one using a phase-matching parallel waveguide with a smaller width than the ring waveguide, and the other using a vertical coupling structure. !5
机译:摘要:我们讨论了一种波导耦合微环谐振器的一阶设计工具,该工具基于具有微米尺寸的曲率半径和较大横向指数对比度的微环波导中波传播的近似解。该模型利用保形变换方法和折射率分布的线性近似,并考虑了波导厚度,色散和衍射的影响。基于此模型,我们针对波导耦合微环谐振器的主要物理特性制定了通用设计规则,包括谐振波长,自由光谱范围,耦合比,弯曲辐射损耗和基板泄漏损耗。另外,物理模型提供了对替代耦合设计的见解,这些耦合设计显着增加了耦合长度,并减少或消除了对波导耦合微环谐振器中狭窄气隙的依赖。我们提供两个示例,一个示例使用相匹配的并行波导,其宽度小于环形波导的宽度,另一个示例使用垂直耦合结构。 !5

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