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-1-5753907Highly Sensitive Plasmonic Sensor Based on a Dual-Side Polished Photonic Crystal Fiber for Component Content Sensing Applications

机译:基于双侧抛光光子晶体纤维的组件含量传感应用的-1-5753907高敏感的等离子体传感器

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摘要

:A plasmonic sensor based on a dual-side polished photonic crystal fiber operating in a telecommunication wavelength range is proposed and investigated numerically by the finite element method (FEM). We study the effects of structural parameters on the sensor’s performance and analyze their tuning effects on loss spectra. As a result, two configurations are found when the analyte refractive index (RI) changes from 1.395 to 1.415. For configuration 1, an RI resolution of 9.39 × 10−6, an average wavelength sensitivity of 10,650 nm/RIU (the maximum wavelength sensitivity is 12,400 nm/RIU), an amplitude sensitivity of 252 RIU−1 and a linearity of 0.99692 are achieved. For configuration 2, the RI resolution, average wavelength sensitivity, amplitude sensitivity and linearity are 1.19 × 10−5, 8400 nm/RIU, 85 RIU−1 and 0.98246, respectively. The combination of both configurations can broaden the wavelength range for the sensing detection. Additionally, the sensor has a superior figure of merit (FOM) to a single-side polished design. The proposed sensor has a maximum wavelength sensitivity, amplitude sensitivity and RI resolution of the same order magnitude as that of existing sensors as well as higher linearity, which allows it to fulfill the requirements for modern sensing of being densely compact, amenable to integration, affordable and capable of remote sensing.
机译::基于在电信波长范围内操作的基于双侧抛光光子晶体纤维的等离子体传感器,并通过有限元方法(FEM)数值进行研究。我们研究了结构参数对传感器性能的影响,并分析了对损耗光谱的调整效果。结果,当分析物折射率(RI)从1.395变为1.415时,发现了两种配置。对于配置1,RI分辨率为9.39×10-6,平均波长灵敏度为10,650nm / Riu(最大波长灵敏度为12,400nm / Riu),达到252 riu-1的幅度灵敏度和0.99692的线性度。对于配置2,RI分辨率,平均波长灵敏度,幅度灵敏度和线性分别为1.19×10-5,8400nm / Riu,85 Riu-1和0.98246。两种配置的组合可以宽度宽度范围来宽传感检测。另外,传感器具有优于优选(FOM)的优势图,到单面抛光设计。所提出的传感器具有最大波长灵敏度,幅度灵敏度和RI分辨率与现有传感器以及更高的线性度,这使其能够满足现代传感的要求密集紧凑,适合集成,价格合理并且能够遥感。

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