Wang Yaxin, Bao Haihong, Ran Zengling, Huang Jingwei, Zhang Shuang
Appl Opt. 2017 May 20;56(15):4250-4254. doi: 10.1364/AO.56.004250.
An integrated sensor via overlapping a micro Fabry-Perot (MFP) cavity with a micro-channel on a regenerated fiber Bragg grating (RFBG) is constructed for dual-parameter sensing of temperature, strain, and gas pressure under a high temperature (600°C). The MFP is fabricated by using a 157 nm micro-machining on H-loaded bendinsensitive fiber. A fiber Bragg grating (FBG) is inscribed at the same position of the MFP using 248 nm laser exposure, and then successfully regenerated after a required annealing process which enhances the strain sensitivity of MFP more than three times. The micro-channel created on the MFP is used to improve gas pressure sensitivity of the MFP nearly 100 times. Since the MFP and RFBG have different sensitivities to gas pressure, strain, and temperature, the sensor head could be used to perform dual-parameter measurement by simultaneous measurement of high temperature and strain, and high temperature and gas pressure.
通过将微法布里-珀罗(MFP)腔与再生光纤布拉格光栅(RFBG)上的微通道重叠构建了一种集成传感器,用于在高温(600°C)下对温度、应变和气体压力进行双参数传感。MFP是通过在H负载弯曲不敏感光纤上进行157nm微加工制造的。使用248nm激光曝光在MFP的同一位置写入光纤布拉格光栅(FBG),然后在经过所需的退火工艺后成功再生,该工艺将MFP的应变灵敏度提高了三倍多。在MFP上创建的微通道用于将MFP的气体压力灵敏度提高近100倍。由于MFP和RFBG对气体压力、应变和温度具有不同的灵敏度,因此该传感器头可通过同时测量高温和应变以及高温和气体压力来进行双参数测量。