Optical channel drop filters based on 45° photonic crystal ring resonators

J. Bai, Junqin Wang, Bo Ni, Junzhen Jiang, Xiyao Chen, Y. Qiu, Zexuan Qiang
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Abstract

A new optical channel drop filter configuration was proposed based on two-dimensional (2D) square-lattice 45° photonic crystal ring resonators (PCRRs). The ring was formed by removing the line defect along ΓM direction instead of conventional ΓX direction. Its spectral information including transmission intensity, dropped efficiency and quality factor affected by different configurations like single-ring PCRR and cascaded dual-ring PCRR was numerically analyzed with 2D finite-difference time-domain technique. More than 830 spectral quality factor and 90% dropped efficiency can be achieved at 1550-nm channel for one single-ring PCRR. Two different light wavelengths can be dropped simultaneously for cascaded serial dual-ring PCRR. These findings make the 45° PCRR optical channel drop filters as an alternative to current micro-ring resonators for ultra-compact WDM components and high density photonic integration.
基于45°光子晶体环形谐振器的光通道降滤光片
提出了一种基于二维方晶格45°光子晶体环谐振器的新型光通道降滤光器结构。通过去除沿ΓM方向而不是传统的ΓX方向的线缺陷形成环。采用二维时域有限差分技术对单环PCRR和级联双环PCRR不同配置对其透射强度、下降效率和品质因子的影响进行了数值分析。单环PCRR在1550 nm通道上可实现830以上的光谱质量因子和90%的效率下降。级联串行双环PCRR可以同时丢入两个不同波长的光。这些发现使45°PCRR光通道下降滤波器成为超紧凑WDM组件和高密度光子集成的现有微环谐振器的替代品。
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