Wavelength multiplexing system based on ring resonators

Q3 Physics and Astronomy Results in Optics Pub Date : 2024-03-11 DOI:10.1016/j.rio.2024.100651
Gonçalo Alves Cavaco , Ricardo A. Marques Lameirinhas , Catarina P. Correia V. Bernardo , João Paulo N. Torres , António Baptista
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Abstract

Wavelength Division Multiplexing, WDM, is a technology developed for applications in telecommunications with the purpose of combining numerous wavelength signals into one single fibre. The aim of this research is the characterization of WDM systems of ring resonators with planar optical waveguides. The optical responses for different configurations, dimensions, and materials are analysed by doing a parametric study both considering analytical expressions and a Finite Element Tool. The results are from add-drop topologies with one, two and three rings. The main difference between topologies with the same parameters is the number of resonance wavelengths, which is higher due to the increase in the number of ring-shaped waveguides. It is concluded that adjusting the rings’ dimensions, the resonant wavelengths are tuned. Furthermore, the higher the rings’ radius the lower is the free spectral range, that can take values from 40 nm to 90 nm. Then, the number of resonant peaks in a wavelength range may change. Also, 1500–5000 describes the values computed for the quality factor, whereas the full width at half maximum varies within some units of nanometres. For models with different core materials, the higher transmittances decrease with lower core refractive indexes and the resonance width increases. These are new degrees of freedom to tune the response of the device that can definitely work as optical wavelength multiplexer, having losses from 20% to 40% considering the transmitted optical power.

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基于环形谐振器的波长复用系统
波分复用技术(WDM)是一种应用于电信领域的技术,其目的是将众多波长信号合并到一根光纤中。这项研究的目的是鉴定带有平面光波导的环形谐振器的波分复用系统。通过分析表达式和有限元工具进行参数研究,分析了不同配置、尺寸和材料的光学响应。研究结果来自单环、双环和三环的加减拓扑结构。参数相同的拓扑结构之间的主要区别在于共振波长数,由于环形波导数量的增加,共振波长数也随之增加。由此得出结论,调整环的尺寸可以调整谐振波长。此外,环形波导的半径越大,自由光谱范围就越小,可从 40 纳米到 90 纳米不等。因此,波长范围内谐振峰的数量也会发生变化。此外,1500-5000 描述的是品质因数的计算值,而半最大全宽则在一些纳米单位内变化。对于具有不同内核材料的模型,较高的透射率会随着较低的内核折射率而降低,共振宽度也会增加。这些都是调整器件响应的新自由度,该器件绝对可以用作光波长多路复用器,其损耗从 20% 到 40% 不等,考虑到传输光功率。
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来源期刊
Results in Optics
Results in Optics Physics and Astronomy-Atomic and Molecular Physics, and Optics
CiteScore
2.50
自引率
0.00%
发文量
115
审稿时长
71 days
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