Chinese Optics Letters, Volume. 10, Issue 5, 050603(2012)

Temperature-independent refractive index measurement based on Fabry–Perot fiber tip sensor modulated by Fresnel reflection

Yue Ma, Xueguang Qiao, Tuan Guo, Ruohui Wang, Jing Zhang, Yinyan Weng, Qiangzhou Rong, Manli Hu, and Zhongyao Feng

A simple fiber tip sensor for refractive index (RI) measurement based on Fabry–Perot (FP) interference modulated by Fresnel reflection is proposed and demonstrated. The sensor head consists of an etching-induced micro air gap near the tip of a single-mode fiber. The microgap and the fiber tip function as two reflectors to form a FP cavity. The external RI can be unambiguously measured by monitoring the fringe contrast of the interference pattern from the reflection spectrum. The experimental results show that the proposed sensor achieves temperature-independent RI measurement with good linear response. The proposed sensor achieves a high RI resolution of up to 3.4 \times 10 5 and has advantages of low cost and easy fabrication.

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Yue Ma, Xueguang Qiao, Tuan Guo, Ruohui Wang, Jing Zhang, Yinyan Weng, Qiangzhou Rong, Manli Hu, Zhongyao Feng. Temperature-independent refractive index measurement based on Fabry–Perot fiber tip sensor modulated by Fresnel reflection[J]. Chinese Optics Letters, 2012, 10(5): 050603

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Received: Oct. 11, 2011

Accepted: Dec. 12, 2011

Published Online: Mar. 5, 2012

The Author Email:

DOI:10.3788/col201210.050603

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