Opt Express. 2023 Feb 27;31(5):8738-8747. doi: 10.1364/OE.479340.
We demonstrated a hybrid sensor of fiber Bragg grating (FBG) and Fabry-Perot interferometer (FPI) based on fiber-tip microcantilever for simultaneous measurement of temperature and humidity. The FPI was developed using femtosecond (fs) laser-induced two-photon polymerization to print the polymer microcantilever at the end of a single-mode fiber, achieving a humidity sensitivity of 0.348 nm/%RH (40% to 90%, when temperature = 25 °C ± 0.1 °C), and a temperature sensitivity of -0.356 nm/°C (25 to 70 °C, when RH% = 40% ± 1%). The FBG was line-by-line inscribed in the fiber core by fs laser micromachining, with a temperature sensitivity of 0.012 nm/ °C (25 to 70 °C, when RH% = 40% ± 1%). As the shift of FBG-peak on the reflection spectra is only sensitive to temperature rather than humidity, the ambient temperature can be directly measured by the FBG. The output of FBG can also be utilized as temperature compensation for FPI-based humidity measurement. Thus, the measured result of relative humidity can be decoupled from the total shift of FPI-dip, achieving the simultaneous measurement of humidity and temperature. Gaining the advantages of high sensitivity, compact size, easy packaging, and dual parameter measurement, this all-fiber sensing probe is anticipated to be applied as the key component for various applications involving the simultaneous measurement of temperature and humidity.
我们展示了一种基于光纤布拉格光栅(FBG)和法布里-珀罗干涉仪(FPI)的混合传感器,该传感器基于光纤尖端微悬臂梁,可同时测量温度和湿度。FPI 是使用飞秒(fs)激光双光子聚合在单模光纤末端打印聚合物微悬臂梁而开发的,在 25°C±0.1°C 时,湿度灵敏度为 0.348nm/%RH(40%至 90%),温度灵敏度为-0.356nm/°C(25 至 70°C,当 RH%=40%±1%)。FBG 通过飞秒激光微加工逐线写入光纤芯,在 25°C±0.1°C 时,温度灵敏度为 0.012nm/°C(40%±1%)。由于 FBG 峰值在反射光谱上的移动仅对温度敏感而对湿度不敏感,因此可以通过 FBG 直接测量环境温度。FBG 的输出也可用于 FPI 基湿度测量的温度补偿。因此,可以从 FPI 陷波的总位移中解耦相对湿度的测量结果,实现温度和湿度的同时测量。该全光纤传感探头具有灵敏度高、尺寸紧凑、易于封装和双参数测量等优点,有望成为各种同时测量温度和湿度的应用的关键组件。