Xu Yanping, Lu Ping, Gao Song, Xiang Dao, Lu Ping, Mihailov Stephen, Bao Xiaoyi
Opt Lett. 2015 Dec 1;40(23):5514-7. doi: 10.1364/OL.40.005514.
A novel multiparameter fiber-optic sensor based on a femtosecond laser micromachined random grating is proposed and demonstrated to realize simultaneous measurement of temperature, axial strain, and surrounding refractive index. A wavelength-division spectral cross-correlation algorithm is adopted to extract the phase variation induced spectral shift responding to different external disturbances. Sensitivities of 10.32 pm/°C, 1.24 pm/με, and -1520.6 pm/RIU were achieved for temperature, axial strain, and surrounding refractive index, respectively. The fiber random grating without phase mask fabrication and high physical strength is an excellent alternative aiming at simple and compact multifunctional fiber sensors.
提出并演示了一种基于飞秒激光微加工随机光栅的新型多参数光纤传感器,以实现温度、轴向应变和周围折射率的同时测量。采用波分光谱互相关算法来提取响应不同外部干扰的相位变化引起的光谱位移。温度、轴向应变和周围折射率的灵敏度分别达到10.32 pm/°C、1.24 pm/με和-1520.6 pm/RIU。无需制作相位掩膜且具有高物理强度的光纤随机光栅是一种用于简单紧凑的多功能光纤传感器的优秀替代品。