Ultrasensitive fiber refractometer based on C-shaped fiber and Vernier effect

Yufei Zhang, Shaoxin Ma, Junfang Jiang, H. Qu, Xuehao Hu
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Abstract

We propose and experimentally demonstrate a fiber refractometer based on a C-shaped fiber and the Vernier effect. The sensor is fabricated by cascading a single mode fiber (SMF) pigtail together with a C-shaped fiber segment and another SMF segment. Thus, the C-shaped fiber would constitute an open cavity (sensing cavity) in which test analytes could be filled, while the SMF segment would constitute another reference cavity. Due to the similar optical path length of these two cavities, Vernier effect would be activated, thus forming spectral envelops in the reflection spectrum of the sensor. Variations in the refractive index (RI) of analytes would result in the shifts of the spectral envelops. Experiments are carried out in the characterization of the sensor measuring gaseous analytes. The sensitivity of the sensor is found to be ~37238 nm/RIU for gas RI measurement. The proposed sensor features the advantages such as ease of fabrication, extremely high sensitivity, capability of sensing of both gaseous and liquid analytes, small footprint, and good mechanical strength.
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基于c形光纤和游标效应的超灵敏光纤折光计
我们提出并实验证明了一种基于c形光纤和游标效应的光纤折光计。该传感器由单模光纤(SMF)尾纤与一c型光纤段和另一SMF段级联而成。因此,c形光纤将构成一个开放的腔(传感腔),其中可以填充测试分析物,而SMF段将构成另一个参考腔。由于这两个空腔的光程长度相似,会激活游标效应,从而在传感器的反射光谱中形成光谱包络。分析物折射率(RI)的变化会导致光谱包络线的偏移。在测量气体分析物的传感器特性中进行了实验。测量结果表明,该传感器的灵敏度可达~37238 nm/RIU。所提出的传感器具有易于制造,极高灵敏度,气体和液体分析物的传感能力,占地面积小,机械强度好等优点。
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