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Refractive Index Sensor Based on Fano Resonances in Metal-Insulator-Metal Waveguides Coupled with Resonators

机译:金属-绝缘子-金属波导谐振器中基于费诺共振的折射率传感器

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摘要

A surface plasmon polariton refractive index sensor based on Fano resonances in metal–insulator–metal (MIM) waveguides coupled with rectangular and ring resonators is proposed and numerically investigated using a finite element method. Fano resonances are observed in the transmission spectra, which result from the coupling between the narrow-band spectral response in the ring resonator and the broadband spectral response in the rectangular resonator. Results are analyzed using coupled-mode theory based on transmission line theory. The coupled mode theory is employed to explain the Fano resonance effect, and the analytical result is in good agreement with the simulation result. The results show that with an increase in the refractive index of the fill dielectric material in the slot of the system, the Fano resonance peak exhibits a remarkable red shift, and the highest value of sensitivity (S) is 1125 nm/RIU, RIU means refractive index unit. Furthermore, the coupled MIM waveguide structure can be integrated with other photonic devices at the chip scale. The results can provide a guide for future applications of this structure.
机译:提出了一种基于金属-绝缘体-金属(MIM)波导中耦合矩形和环形谐振器的Fano谐振的表面等离子体激元折射率传感器,并使用有限元方法进行了数值研究。在传输频谱中观察到了法诺共振,这是由环形谐振器中的窄带频谱响应与矩形谐振器中的宽带频谱响应之间的耦合引起的。使用基于传输线理论的耦合模式理论分析结果。用耦合模理论解释了法诺共振效应,分析结果与仿真结果吻合良好。结果表明,随着系统缝隙中填充电介质材料折射率的增加,Fano共振峰表现出显着的红移,灵敏度(S)的最大值为1125 nm / RIU,RIU表示折射率单位。此外,耦合的MIM波导结构可以与其他光子器件以芯片级集成在一起。结果可以为该结构的未来应用提供指导。

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