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Low-noise and highly stable optical fiber temperature sensor using modified pulse-reference-based compensation technique

Low-noise and highly stable optical fiber temperature sensor using modified pulse-reference-based compensation technique
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摘要 We modify the pulse-reference-based compensation technique and propose a low-noise and highly stable optical fiber temperature sensor based on a zinc telluride film-coated fiber tip. The system noise is measured to be 0.0005 dB, which makes it possible for the detection of the minor reflectivity change of the film at different temperatures. The temperature sensitivity is 0.0034 d B/℃, so the resolution can achieve 0.2℃. The maximum difference of the temperature output values of the sensor at 20℃ at different points in time is 0.39℃. The low cost, ultra-small size, high stability, and good repeatability of the sensor make it a promising temperature sensing device for practical application. We modify the pulse-reference-based compensation technique and propose a low-noise and highly stable optical fiber temperature sensor based on a zinc telluride film-coated fiber tip. The system noise is measured to be 0.0005 dB, which makes it possible for the detection of the minor reflectivity change of the film at different temperatures. The temperature sensitivity is 0.0034 d B/℃, so the resolution can achieve 0.2℃. The maximum difference of the temperature output values of the sensor at 20℃ at different points in time is 0.39℃. The low cost, ultra-small size, high stability, and good repeatability of the sensor make it a promising temperature sensing device for practical application.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2018年第7期19-22,共4页 中国光学快报(英文版)
基金 supported by the National Natural Science Foundation of China(Nos.11574397,61775238,61705262,and 61705263) the Scientific Research Project of National University of Defense Technology(No.JC15-11-02)
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