Yin Bin, Wu Songhua, Wang Muguang, Liu Wenqi, Li Haisu, Wu Beilei, Wang Qichao
Opt Express. 2019 Jan 7;27(1):252-264. doi: 10.1364/OE.27.000252.
A novel differential intensity-measurement high-sensitivity refractive index (RI) sensor based on cascaded dual-wavelength fiber laser and single-mode-no-core-hollow-core-no-core-single-mode (SNHNS) structure is proposed and demonstrated. The sensing unit consists of one uniform fiber Bragg grating (FBG) and an SNHNS structure as all-fiber interferometer filter. The dual-wavelength fiber laser has a ring cavity composed of two FBGs with central wavelengths of 1550.10nm and 1553.61nm. Through monitoring the wavelength shift and the output power difference of the dual-wavelength fiber laser, the simultaneous measurement for RI and temperature is realized. In our experiment, the proposed fiber laser sensor exhibits high RI sensitivities of -193.1dB/RIU and 174.8dB/RIU in the range of 1.334-1.384. The relative variation of output power at the two FBG wavelengths shows a higher RI sensitivity of -367.9dB/RIU with better stability, which is greater than the traditional modal interferometer structure. Meanwhile, the temperature sensitivity of the proposed sensor is 8.53 × 10nm/°C, and the changes of laser output power caused by temperature are -0.223dB/°C and 0.215dB/°C.
提出并演示了一种基于级联双波长光纤激光器和单模-无芯-空心-无芯-单模(SNHNS)结构的新型差分强度测量高灵敏度折射率(RI)传感器。传感单元由一个均匀光纤布拉格光栅(FBG)和一个SNHNS结构组成,作为全光纤干涉仪滤波器。双波长光纤激光器具有一个环形腔,由两个中心波长分别为1550.10nm和1553.61nm的FBG组成。通过监测双波长光纤激光器的波长偏移和输出功率差,实现了对折射率和温度的同时测量。在我们的实验中,所提出的光纤激光传感器在1.334 - 1.384范围内表现出-193.1dB/RIU和174.8dB/RIU的高折射率灵敏度。两个FBG波长处输出功率的相对变化显示出更高的-367.9dB/RIU的折射率灵敏度,且具有更好的稳定性,这比传统的模式干涉仪结构更高。同时,所提出传感器的温度灵敏度为8.53×10nm/°C,温度引起的激光输出功率变化分别为-0.223dB/°C和0.215dB/°C。