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Gold-Film-Thickness Dependent SPR Refractive Index and Temperature Sensing with Hetero-Core Optical Fiber Structure

机译:金膜厚度与异芯光纤结构相关的SPR折射率和温度感测

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摘要

A simple hetero-core optical fiber (MMF-NCF-MMF) surface plasmon resonance (SPR) sensing structure was proposed. The SPR spectral sensitivity, full width of half peak (FWHM), valley depth (VD), and figure of merit (FOM) were defined to evaluate the sensing performance comprehensively. The effect of gold film thickness on the refractive index and temperature sensing performance was studied experimentally. The optimum gold film thickness was found. The maximum sensitivities for refractive index and temperature measurement were obtained to be 2933.25 nm/RIU and −0.91973 nm/°C, respectively. The experimental results are helpful to design the SPR structure with improved sensing performance. The proposed SPR sensing structure has the advantages of simple structure, easy implementation, and good robustness, which implies a broad application prospect.
机译:提出了一种简单的异芯光纤(MMF-NCF-MMF)表面等离子体共振(SPR)传感结构。定义了SPR光谱灵敏度,半峰全宽(FWHM),谷深(VD)和品质因数(FOM),以全面评估感测性能。实验研究了金膜厚度对折射率和温度感测性能的影响。找到了最佳的金膜厚度。折射率和温度测量的最大灵敏度分别为2933.25 nm / RIU和-0.91973 nm /°C。实验结果有助于设计具有改善的传感性能的SPR结构。所提出的SPR感测结构具有结构简单,易于实现,鲁棒性强等优点,具有广阔的应用前景。

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