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Sensing characteristics based on Fano resonance in rectangular ring waveguide

机译:矩形环形波导中基于Fano共振的传感特性

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摘要

Sensing characteristics based on Fano resonance in a rectangular ring resonator with a stub are investigated numerically. Simulation results show that a sharp and asymmetric Fano-line shape emerges in the proposed structure. Through tuning the width and length of the stub, it is found that the width and length play an important role in optimizing the sensing characteristic. Using the sharp and asymmetric Fano-line shape a highly sensitive plasmonic nanosensor with the sensitivity of 1000 nm/RIU and a tunable figure of merit (FOM) can be attained. The maximum FOM can reach up to 992,800 when the stub length d=120 nm, width l=130 nm and the refractive index difference Delta n=0.05, which is larger than that in previous reports. In addition, the results show that a larger FOM can be obtained by tuning the stub width than tuning its length. The proposed model and results provide guidance for fundamental research of the plasmonic nanosensor applications and designs. (C) 2015 Elsevier B.V. All rights reserved.
机译:数值研究了带有短截线的矩形环形谐振器中基于Fano谐振的传感特性。仿真结果表明,该结构出现了尖锐且不对称的Fano线形状。通过调整短截线的宽度和长度,发现宽度和长度在优化感测特性方面起着重要作用。使用尖锐且不对称的Fano线形状,可以获得具有1000 nm / RIU的灵敏度和可调谐的品质因数(FOM)的高灵敏度等离子体纳米传感器。当短截线长度d = 120 nm,宽度l = 130 nm和折射率差Delta n = 0.05时,最大FOM可以达到992,800,这比以前的报道更大。另外,结果表明,通过调整短截线的宽度可以获得比调整其长度大的FOM。提出的模型和结果为等离子纳米传感器应用和设计的基础研究提供指导。 (C)2015 Elsevier B.V.保留所有权利。

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