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基于模式耦合的具有行波状滤波响应的变形方腔滤波器的时域有限差分分析

Finite-difference time-domain analysis of deformed square cavity filters with a traveling-wave-like filtering response by mode coupling.

作者信息

Chen Qin, Yang Yue-De, Huang Yong-Zhen

机构信息

State Key Laboratory on Integrated Optoelectronics, Institute of Semiconductors, Chinese Academy of Sciences, Beijing, China.

出版信息

Opt Lett. 2007 Apr 15;32(8):967-9. doi: 10.1364/ol.32.000967.

Abstract

An add-drop filter based on a perfect square resonator can realize a maximum of only 25% power dropping because the confined modes are standing-wave modes. By means of mode coupling between two modes with inverse symmetry properties, a traveling-wave-like filtering response is obtained in a two-dimensional single square cavity filter with cut or circular corners by finite-difference time-domain simulation. The optimized deformation parameters for an add-drop filter can be accurately predicted as the overlapping point of the two coupling modes in an isolated deformed square cavity. More than 80% power dropping can be obtained in a deformed square cavity filter with a side length of 3.01 microm. The free spectral region is decided by the mode spacing between modes, with the sum of the mode indices differing by 1.

摘要

基于完美正方形谐振器的分插滤波器由于受限模式为驻波模式,最多只能实现25%的功率下降。通过具有反对称特性的两种模式之间的模式耦合,利用时域有限差分模拟在具有切角或圆角的二维单正方形腔滤波器中获得了类似行波的滤波响应。分插滤波器的优化变形参数可作为孤立变形正方形腔中两种耦合模式的重叠点精确预测。在边长为3.01微米的变形正方形腔滤波器中可获得超过80%的功率下降。自由光谱范围由模式之间的模式间距决定,模式指数之和相差1。

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