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首页> 外文期刊>The Open Optics Journal >Light Coupling Between Photonic Crystal and Standard Photonic Waveguides in a Compact Photonic Integrated Circuitry Using 2D FDTD
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Light Coupling Between Photonic Crystal and Standard Photonic Waveguides in a Compact Photonic Integrated Circuitry Using 2D FDTD

机译:使用二维FDTD的紧凑型光子集成电路中光子晶体与标准光子波导之间的光耦合

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Finite difference time domain (FDTD) analysis was used to design a photonic integrated circuitry (PIC) based on a Silicon-on-Insulator (SOI) structure. Light coupling efficiency from a single mode photonic crystal waveguide (PCW) into a single mode fibre (SMF) through adiabatic tapered waveguide and microrings based on resonance acting as spot-size converters (SSCs), is demonstrated. Optimisation of each component and their integration into a single optical chip is presented. SSCs are optimised in order to reduce back reflection and increase coupling efficiency between all devices constituting the optical chip. Significant reduction of back-reflections, insertion losses and the Fabry-Perrot noise are obtained by optimising each component and when mode and impedance matching conditions are achieved. The transmission characteristics of each component are investigated and low propagation losses in the PIC are reported.
机译:有限差分时域(FDTD)分析用于设计基于绝缘体上硅(SOI)结构的光子集成电路(PIC)。展示了从单模光子晶体波导(PCW)到绝热锥形波导和基于谐振的微环(用作点尺寸转换器(SSC))到单模光纤(SMF)的光耦合效率。介绍了每个组件的优化及其在单个光学芯片中的集成。对SSC进行了优化,以减少背反射并提高构成光学芯片的所有设备之间的耦合效率。通过优化每个组件以及达到模式和阻抗匹配条件,可以显着减少背反射,插入损耗和法布里-珀罗噪声。研究了每个组件的传输特性,并报告了PIC中的低传播损耗。

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