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基于单个微盘谐振器的双波段光学滤波器。

Dual-band optical filter based on a single microdisk resonator.

机构信息

Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan, 430074, China.

出版信息

Opt Lett. 2011 Dec 1;36(23):4494-6. doi: 10.1364/OL.36.004494.

Abstract

We propose and experimentally demonstrate a dual-band optical filter based on a single microdisk resonator. An analytical model is built based on the transfer matrix method and is applied to simulate the properties of such a device. Competition and interference of the dual modes in the resonator lead to dual-band filtering with high isolation. As the finite-difference time-domain simulation illustrates, two low-order resonant modes can be effectively triggered by optimizing the waveguide width and spacing gap between the compact resonator and waveguides. In experiment, a double side-coupled microdisk resonator was fabricated on a nanophotonic silicon-on-insulator platform, and dual-band bandpass filtering is realized with an optical isolation higher than 20 dB and an insertion loss lower than 2 dB. The experimental results agree well with our modeling results.

摘要

我们提出并实验演示了一种基于单个微盘谐振器的双波段光学滤波器。基于传输矩阵方法建立了一个分析模型,并应用于模拟这种器件的特性。谐振器中双模式的竞争和干涉导致了具有高隔离度的双波段滤波。正如有限差分时域模拟所说明的,通过优化紧凑谐振器与波导之间的波导宽度和间隔间隙,可以有效地触发两个低阶谐振模式。在实验中,在纳米光子学硅-绝缘体平台上制造了一个双边耦合微盘谐振器,并实现了双波段带通滤波,其光隔离度高于 20 dB,插入损耗低于 2 dB。实验结果与我们的建模结果吻合良好。

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