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Optical Fiber Cladding SPR Sensor Based on Core-Shift Welding Technology

DOI:10.3390/s19051202 期刊:Sensors 出版年份:2019 更新时间:2025-11-28 14:24:03
摘要: The typical structure of an optical fiber surface plasmon resonance (SPR) sensor, which has been widely investigated, is to produce the SPR phenomenon by the transmission of light in a fiber core. The traditional method is to peel off the fiber cladding by complex methods such as corrosion, polishing, and grinding. In this paper, the transmitted light of a single-mode fiber is injected into three kinds of fiber cladding by core-shift welding technology to obtain the evanescent field directly between the cladding and the air interface and to build the Kretschmann structure by plating with a 50-nm gold film. The SPR sensing phenomenon is realized in three kinds of fiber cladding of a single-mode fiber, a graded-index multimode fiber, and a step-index multimode fiber. For the step-index multimode fiber cladding SPR sensor, all the light field energy is coupled to the cladding, leading to no light field in the fiber core, the deepest resonance valley, and the narrowest full width at half maximum. The single-mode fiber cladding SPR sensor has the highest sensitivity, and the mean sensitivity of the probe reaches 2538 nm/RIU (refractive index unit) after parameter optimization.
作者: Yong Wei,Jiangxi Hu,Ping Wu,Yudong Su,Chunlan Liu,Shifa Wang,Xiangfei Nie,Lu Liu
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To investigate and realize a novel proposal for an optical fiber SPR sensor that can directly couple the light of the fiber core into all kinds of fiber cladding in an easy and effective way, to carry out the transfer of the evanescent field from the interface between the fiber core and the cladding to the interface between the cladding and the air, and to realize SPR sensing in all kinds of fiber cladding.

The paper successfully realizes SPR sensing in three kinds of fiber cladding using core-shift welding technology, with the single-mode fiber cladding SPR sensor showing the highest sensitivity. The study provides a novel and simpler method for SPR sensor fabrication, avoiding complex processing methods and improving repeatability.

The study is limited by the complexity of processing and the high cost associated with traditional fiber SPR sensors. The proposed method aims to overcome these limitations but may still face challenges in terms of sensitivity and resonance curve shape optimization.

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