抑制光子晶体腔结构中不必要共振的一些试验

Yongmei Zhang, Hiroyuki Terashima, Daichi Ogata, H. Maeda
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引用次数: 17

摘要

测量了三角形晶格二维柱型光子晶体波导的传输和滤波特性,并对其进行了实验改进。采用晶格周期P=26.5 mm,柱直径=7.5mm,介电常数ƒÃr=36.0的微波频率比例模型进行测量。首先,利用柱阵中的线缺陷建立对称y分支波导;在确定3.6 ~ 4.2 GHz频率范围内的对称分支操作后,在每个输出波导中分别放置一对长度分别为3.0P和2.5P的柱作为空腔。这些空腔在波导中对应ƒÉg/2的频率处显示出谐振特性。此外,在这些谐振频率下,观察到输出端口之间的良好消光比超过20 dB。接下来,将y支路级联两级,并在每个输出端口放置四个不同长度的空腔,在3.6至4.2 GHz频率范围内观察每个输出的滤波特性。各共振频率的消光比均大于17 dB。虽然该结构具有良好的滤波特性,但在滤波频率主峰附近存在不必要的频域共振。为了抑制这些不需要的峰值,在空腔后插入长度为ƒÉg/4的刺,其中ƒÉg是不必要频率的波长。与简单腔体相比,由于刺伤,不必要的共振峰被抑制在20 dB以上。该结构可作为光子晶体光学电路中波分复用(WDM)系统的基本滤波元件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Some Trials to Suppress Unnecessary Resonance in Photonic Crystal Cavity Structure
Propagation and filtering characteristics of two dimensional pillar-type photonic crystal waveguide with triangular lattice were measured and improved experimentally. Measurement was done by using a scale model in microwave frequency with lattice period P=26.5 mm, diameter of pillar .=7.5mm and its dielectric constant ƒÃr=36.0 around 4 GHz. First, symmetric Y-branch waveguide was set up by using line-defect in array of pillars. After confirming symmetric branching operation in frequency range between 3.6 and 4.2 GHz, a pair of pillars which have length of 3.0P and 2.5P respectively, were situated in each output waveguide as cavities. These cavities showed resonant characteristics at frequencies corresponding to ƒÉg/2 in the waveguide. Also, good extinction ratios of over 20 dB between output ports were observed at these resonant frequencies. Next, cascading the Y-branch by two stages and situating four cavities with different lengths at each output port, filtering characteristics were observed at each output in frequency range of 3.6 to 4.2 GHz. The extinction ratios at each resonance frequency were over 17 dB. Though the structure showed good filtering characteristics, unnecessary resonances in frequency domain were observed near main peaks of filtered frequency. To suppress these unwanted peaks, stabs with length of ƒÉg/4 were inserted after the cavities, where ƒÉg is wavelength of the unnecessary frequency. Due to the stabs, peaks of the unnecessary resonances were suppressed over 20 dB compared with simple cavities. This structure is applicable as a basic filter component in wavelength division multiplexing (WDM) systems in photonic crystal optical circuits.
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