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具有波长选择性反射微腔的光子晶体通道下降滤波器

Photonic crystal channel drop filter with a wavelength-selective reflection micro-cavity.

作者信息

Ren Hongliang, Jiang Chun, Hu Weisheng, Gao Mingyi, Wang Jingyuan

出版信息

Opt Express. 2006 Mar 20;14(6):2446-58. doi: 10.1364/oe.14.002446.

Abstract

In the paper, a novel three-port channel drop filter in two dimensional photonic crystals (2D PCs) with a wavelength-selective reflection micro-cavity is proposed. In the structure, two micro-cavities are used. One is used for a resonant tunneling-based channel drop filter. The other is used to realize wavelength-selective reflection feedback in the bus wave-guide, which consists of a point defect micro-cavity side-coupled to a line defect waveguide based on photonic crystals. Using coupled mode theory in time, the conditions to achieve 100% drop efficiency are derived thoroughly. The simulation results by using the finite-difference time-domain (FDTD) method imply that the design is feasible.

摘要

本文提出了一种二维光子晶体(2D PCs)中带有波长选择性反射微腔的新型三端口信道下滤滤波器。在该结构中,使用了两个微腔。一个用于基于共振隧穿的信道下滤滤波器。另一个用于在总线波导中实现波长选择性反射反馈,该总线波导由一个点缺陷微腔与基于光子晶体的线缺陷波导侧面耦合而成。利用时域耦合模理论,深入推导了实现100%下滤效率的条件。使用时域有限差分(FDTD)方法的仿真结果表明该设计是可行的。

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