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High temperature-sensitivity sensor based on long period fiber grating inscribed with femtosecond laser transversal-scanning method 被引量:3

High temperature-sensitivity sensor based on long period fiber grating inscribed with femtosecond laser transversal-scanning method
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摘要 We propose a high temperature-sensitive long period fiber grating(LPFG) sensor fabricated by using the femtosecond laser transversal-scanning method. The femtosecond pulses scan over the whole fiber core and some part of the cladding region; the modified regions are more extended. It is found that the LPFG-I fabricated by the transversal-scanning method shows higher temperature sensitivity and better temperature uniformity than that of LPFG-II written by the femtosecond laser point-by-point method. The LPFG-I with a temperature sensitivity of 75.96 pm/°C in the range of 25°C–400°C is measured. Moreover, in the range from 400°C to 800°C, a higher temperature sensitivity of 148.64 pm/°C and good linearity of 0.99 are achieved, while the temperature sensitivity of LPFG-II is only 95.55 pm/°C. LPFG-I exhibits better temperature characteristics, which, to the best of our knowledge, has the highest sensitivity in silica fiber temperature sensors. We propose a high temperature-sensitive long period fiber grating(LPFG) sensor fabricated by using the femtosecond laser transversal-scanning method. The femtosecond pulses scan over the whole fiber core and some part of the cladding region; the modified regions are more extended. It is found that the LPFG-I fabricated by the transversal-scanning method shows higher temperature sensitivity and better temperature uniformity than that of LPFG-II written by the femtosecond laser point-by-point method. The LPFG-I with a temperature sensitivity of 75.96 pm/°C in the range of 25°C–400°C is measured. Moreover, in the range from 400°C to 800°C, a higher temperature sensitivity of 148.64 pm/°C and good linearity of 0.99 are achieved, while the temperature sensitivity of LPFG-II is only 95.55 pm/°C. LPFG-I exhibits better temperature characteristics, which, to the best of our knowledge, has the highest sensitivity in silica fiber temperature sensors.
作者 Xinran Dong Zheng Xie Yuxin Song Kai Yin Dongkai Chu Ji'an Duan 董欣然;谢政;宋雨欣;银恺;褚东凯;段吉安(State Key Laboratory of High Performance Complex Manufacturing,College of Mechanical and Electrical Engineering,Central South University,Changsha 410083,China)
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2017年第9期51-55,共5页 中国光学快报(英文版)
基金 supported by the National Natural Science Foundation of China(NSFC)(Nos.91323301,51505505,51475482,and 51475481) the Natural Science Foundation of Hunan Province(No.2016JJ3147) the China Postdoctoral Science Foundation(Nos.2015M572264 and 2016T90757) the Self-selected Topic Fund of State Key Laboratory of High Performance and Complex Manufacturing(No.ZZYJKT2015-08) the Fundamental Research Funds for the Central Universities of Central South University
作者简介 Corresponding author: duanjian@esu.edu.cn
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