Simulation of Integrated Optical Triple Ring Resonator for Sensing Application

S. M, P. Steglich
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Abstract

In this work, a compact integrated optical ring resonator was designed with three rings structure having identical radius and two bus waveguides. The four ports of the bus waveguide i.e., two input and two output ports were placed for monitoring the path of the light traveling through input port to the output port. The linking of the light was achieved by the virtue of the rings and bus waveguide that works on the coupled mode theory. The imitation of the three- ring resonator configuration was carried out to analyze the parameters like transmission spectra and the free spectral range. The variation in the intensity of the light at the output port with respect to the wavelength was monitored in the simulation results. The sensitivity of the waveguide observed was 383 nm/RIU. The phase change occurred by the light structure is presented. The designed structure can further be analyzed for the sensing application since we can observe the shift in the phase by placing any bio particle in the structure.
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传感用集成光三环谐振器的仿真
本文设计了一种具有相同半径的三环结构和双母线波导的紧凑型集成光环形谐振器。总线波导的四个端口,即两个输入端口和两个输出端口,用于监测光通过输入端口到输出端口的路径。光的连接是利用环和母线波导的耦合模式原理实现的。模拟了三环谐振腔的结构,分析了其透射光谱和自由光谱范围等参数。在模拟结果中监测了输出端口的光强度随波长的变化。所观察到的波导灵敏度为383 nm/RIU。给出了由光结构引起的相变。设计的结构可以进一步分析用于传感应用,因为我们可以通过在结构中放置任何生物颗粒来观察相位的变化。
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