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Tunable Fano Resonance in Asymmetric MIM Waveguide Structure

机译:非对称MIM波导结构中的可调谐Fano共振

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A plasmonic waveguide coupled system that uses a metal-insulator-metal (MIM) waveguide with two silver baffles and a coupled ring cavity is proposed in this study. The transmission properties of the plasmonic system were investigated using the finite element method. The simulation results show a Fano profile in the transmission spectrum, which was caused by the interaction of the broadband resonance of the Fabry-Perot (F-P) cavity and the narrow band resonance of the ring cavity. The Fabry-Perot (F-P) cavity in this case was formed by two silver baffles dividing the MIM waveguide. The maximum sensitivity of 718 nm/RIU and the maximum figure of merit of 4354 were achieved. Furthermore, the effects of the structural parameters of the F-P cavity and the ring cavity on the transmission properties of the plasmonic system were analyzed. The results can provide a guide for designing highly sensitive on-chip sensors based on surface plasmon polaritons.
机译:本研究提出了一种等离子波导耦合系统,该系统使用具有两个银挡板和耦合环腔的金属-绝缘体-金属(MIM)波导。使用有限元方法研究了等离子体系统的传输特性。仿真结果显示了透射光谱中的Fano轮廓,这是由Fabry-Perot(F-P)腔的宽带共振与环形腔的窄带共振的相互作用引起的。在这种情况下,法布里-珀罗(F-P)腔由分隔MIM波导的两个银挡板形成。获得了718 nm / RIU的最大灵敏度和4354的最大品质因数。此外,分析了F-P腔和环形腔的结构参数对等离子体系统传输特性的影响。结果可为基于表面等离振子极化子的高灵敏芯片上传感器设计提供指导。

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