Zhu Junjie, He Wei, Li Shaode, Li Zhihan, Zhu Lianqing
Appl Opt. 2023 Sep 1;62(25):6661-6671. doi: 10.1364/AO.494967.
We designed and fabricated what we believe to be a novel dual-parameter fiber optic sensor for simultaneous measurement of temperature and strain, which was composed of a femtosecond laser inscribed fiber Bragg grating (FBG), three segments of a single-mode fiber (SMF), and two segments of a multimode fiber (MMF), forming a SMF-MMF-FBG-MMF-SMF structure. The FBG and Mach-Zehnder interferometer (MZI) were present in this structure so that the changes of the temperature and strain parameters can be sensed by the shifts of the reflection center wavelength of the FBG and the interference valley wavelength of the MZI. We simulated the light field distribution of the sensor structure, compared the shapes of the interference spectra formed by the MZI structure with different sensing arm lengths of 25, 35, and 45 mm, and analyzed the spectra in the spatial frequency domain. The simulation results showed that the interference spectrum of the MZI structure with a 25 mm length sensing arm was clearer and more suitable for the experiment. The experimental results showed that the temperature sensitivity of the FBG and MZI was 14.81 and 43.54 pm/°C in the range of 80°C to 240°C, and the strain sensitivity was 1.49 and -2.58 pm/µε in the range of 0 to 1200 µε, with a high linearity and excellent repeatability. The sensor is economical, sensitive, and convenient to fabricate, and exhibits promising applications in the fields of biochemical medical detection and industrial production monitoring.
我们设计并制造了一种我们认为是新颖的用于同时测量温度和应变的双参数光纤传感器,它由飞秒激光写入的光纤布拉格光栅(FBG)、三段单模光纤(SMF)和两段多模光纤(MMF)组成,形成了SMF-MMF-FBG-MMF-SMF结构。该结构中存在FBG和马赫-曾德尔干涉仪(MZI),以便通过FBG反射中心波长的移动和MZI干涉谷波长的移动来感测温度和应变参数的变化。我们模拟了传感器结构的光场分布,比较了不同传感臂长度为25、35和45毫米的MZI结构形成的干涉光谱形状,并在空间频域中分析了光谱。模拟结果表明,传感臂长度为25毫米的MZI结构的干涉光谱更清晰,更适合实验。实验结果表明,在80°C至240°C范围内,FBG和MZI的温度灵敏度分别为14.81和43.54 pm/°C,在0至1200 με范围内,应变灵敏度分别为1.49和-2.58 pm/με,具有高线性度和出色的重复性。该传感器经济、灵敏且便于制造,在生化医学检测和工业生产监测领域具有广阔的应用前景。