单束和双束注入双耦合器结构单环谐振腔耦合系数变化效应比较

M. Hamidah, S. Rahardjo, R. W. Purnamaningsih, N. R. Poespawati, P. Priambodo
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引用次数: 1

摘要

环形谐振器因其在谐振频率上的高精细值和高灵敏度而成为当今最受关注的研究课题之一。关于该器件的特性动态条件、结构(单、多、组合)及其在传感器、滤波器等方面的应用,已经有许多科学出版物。目前对双耦合器结构单环谐振器的性能特性进行了讨论,但尚未讨论耦合系数变化对谐振器性能的影响。同时,在以往的研究中,我们研究了耦合系数的变化对单耦合器结构的单环谐振器的影响。现在,我们进一步探讨了耦合系数变化对双耦合器结构单环谐振器功率传递函数输出的影响。此外,利用单光束和双光束输入分别从环形谐振器的跌落口和直通口获得传输功率作为输出特性。仿真结果表明,对于跌落口输出,随着耦合系数的增大,单波束输入的跌落口输出和双反向输入的功率传递函数输出峰值都增大,但双反向输入的功率传递函数输出峰值比单波束输入的功率传递函数输出峰值要高得多。同时,对于通过口输出,双并联输入配置的结果与单光束配置的结果略有不同,其中双并联输入配置的结果显示功率传输输出的峰值与先前已发表的单环形谐振器单耦合器配置的仿真结果几乎相似。本文的仿真工作对谐振器性能的设计有一定的参考价值,因为谐振器的传输功率是设计谐振器性能的重要参数之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of coupling coefficient variation effects on double couplers structured single ring resonator with single and double beams injection
Ring Resonator has become one of the most interesting research topics nowadays since this device has high finesse value at resonance frequency and high sensitivity as well. There have been many scientific publications in the device's characteristic dynamic conditions, structures (single, multi and combination), and their applications as well, such as sensors, filters and others. The performance characteristics of double coupler structured single ring resonator has been discussed so far but the effect of coupling coefficient variation has not been discussed yet. Meanwhile, in previous research we have investigated the effect of coupling coefficient variation on single coupler structured single ring resonator. Now, we explore further the effect of coupling coefficient variation on the power transfer function output of a double couplers structured single ring resonator. Besides, single beam and double beams inputs are utilized to get the transmission powers as the output characteristics from both of drop and through ports of the ring resonator. The simulation results show, for the drop port output, as the higher coupling coefficient is, the peak of the power transfer function output gets higher for both the drop port output of single beam input and double counter directional inputs, but the double counter directional inputs, shows the peak of the power transfer function output much higher compared to its of the single beam input. Meanwhile for through port output, the result with double parallel inputs configuration shows a bit different behavior with its of single beam configuration, where as the result of the double parallel input configuration exhibits peak of the power transfer output almost similar to the simulation result utilizing single ring resonator with single coupler configuration that has already published previously. This simulation works may be useful in the design of resonator performance when transmission power is one of the important parameters to be considered.
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