基于光子晶体双环谐振器的f形通道下降滤波器

Zhan Wang, Xiaohong Sun, Zhengshuai Wei
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摘要

本文提出了一种基于双环谐振腔的新型二维光子晶体f形通道降滤波器,具有窄带宽和高透射率。研究了影响谐振频率和输出带宽的参数。这些参数包括内棒和耦合棒的折射率以及耦合棒的半径。在第二谐振器的两个输出端口中,通过改变耦合棒的半径和内棒的折射率,可以灵活地变换频段的输出中心频率,方便地改变两个输出端口的传输。通过时域有限差分(FDTD)方法,该f型通道下降滤波器在D输出端可同时获得87%的透过率和778的品质因数,在C输出端可同时获得82%的透过率和255的品质因数。
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F-shaped Channel-Drop Filter Based On Photonic Crystal Double Ring Resonators
In this paper, we demonstrate a new type of 2D photonic crystal F-shaped channel-drop filter based on double ring resonators with narrow bandwidth and high transmission. The parameters which affect resonant frequency and output bandwidth are investigated. These parameters include refractive index of inner rods and coupling rods as well as radius of the coupling rods. In the two output ports of the second resonator, the output central frequency of frequency band can be transformed flexibly and the transmission of the two output ports can be changed easily by varying the radii of coupling rods and refractive index of inner rods. The F-shaped channel-drop filter can achieve transmittance of 87% and quality factor of 778 at the D output port and get transmittance of 82% and quality factor of 255 at the C output port simultaneously, found by finite difference time domain(FDTD) method.
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