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具有膜型光子晶体波导的超低损耗光子集成电路。

Ultra-low loss photonic integrated circuit with membrane-type photonic crystal waveguides.

作者信息

McNab Sharee, Moll Nikolaj, Vlasov Yurii

出版信息

Opt Express. 2003 Nov 3;11(22):2927-39. doi: 10.1364/oe.11.002927.

Abstract

We report the design and testing of an SOI-based photonic integrated circuit containing two-dimensional membrane-type photonic crystal waveguides. The circuit comprises spot-size converters to efficiently couple light from a fiber into single-mode strip waveguides and butt-couplers to couple from strip waveguides to photonic crystal waveguides. Each optical interface was optimized to minimize back-reflections and reduce the Fabry-Perot noise. The transmission characteristics of each component are measured and record low propagation losses in photonic crystal waveguides of 24dB/cm are reported. The combination of an efficient two-stage coupling scheme and utilization of ultra-long (up to 2mm) photonic crystal waveguides reduces the uncertainty in determining the loss figure to 3dB/cm.

摘要

我们报告了一种基于绝缘体上硅(SOI)的光子集成电路的设计与测试,该电路包含二维膜型光子晶体波导。该电路包括光斑尺寸转换器,用于将光纤中的光有效地耦合到单模条形波导中,以及对接耦合器,用于从条形波导耦合到光子晶体波导。对每个光学接口进行了优化,以尽量减少背反射并降低法布里 - 珀罗噪声。测量了每个组件的传输特性,并报告了光子晶体波导中记录的低传播损耗为24dB/cm。高效的两级耦合方案与超长(长达2mm)光子晶体波导的结合,将确定损耗系数的不确定性降低到3dB/cm。

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