Wang Yu, Zhou Yan, Wang Xinyu, Chen Daru, Lian Zhenggang, Lu Chao, Tam Hwa-Yaw
Opt Lett. 2020 Nov 15;45(22):6122-6125. doi: 10.1364/OL.403722.
A novel, to the best of our knowledge, reflective sensor fabricated by simply sandwiching a homemade hollow core Bragg fiber (HCBF) between two single-mode fibers is proposed and demonstrated for the simultaneous measurement of the temperature and the strain. Different from traditional Fabry-Perot interferometer (FPI) sensors that can achieve only one-parameter sensing with inevitable cross-correspondence to other parameters, the proposed sensor based on the HCBF, which functions as an FPI-inducing FPI spectrum pattern and a weak waveguide confining light-inducing periodic envelope in reflection spectrum, ensures double-parameter sensing. For the HCBF-based reflective sensor, different sensing mechanisms lead to the various sensitivity values of temperature and strain (2.98 pm/°C, 19.4 pm/°C, 2.02 pm/µε, -0.36/µε), resulting in a different shift of the confining spectrum envelope and the FPI spectrum fringe. Experimental results indicate that our proposed sensor can measure temperature and strain simultaneously by utilizing a 2×2 matrix. Taking advantage of the compact size, easy fabrication, and low cost, this sensor has an applicable value in harsh environment for simultaneous strain and temperature sensing.
据我们所知,一种新型反射式传感器被提出并得到验证,该传感器通过将自制的空心光纤布拉格光纤(HCBF)简单地夹在两根单模光纤之间,实现温度和应变的同时测量。与传统的法布里-珀罗干涉仪(FPI)传感器不同,传统FPI传感器只能实现单参数传感,且不可避免地会与其他参数产生交叉对应,而基于HCBF的该传感器,其在反射光谱中既起到诱导FPI光谱图案的作用,又起到弱波导限制光诱导周期性包络的作用,可确保双参数传感。对于基于HCBF的反射式传感器,不同的传感机制导致温度和应变具有不同的灵敏度值(2.98 pm/°C、19.4 pm/°C、2.02 pm/με、-0.36/με),从而导致限制光谱包络和FPI光谱条纹发生不同的偏移。实验结果表明,我们提出的传感器可以利用2×2矩阵同时测量温度和应变。该传感器具有尺寸紧凑、易于制造和成本低的优点,在恶劣环境下进行应变和温度同时传感具有应用价值。