Wang Jian, Wu Shengli, Ren Wenyi
Appl Opt. 2014 Nov 20;53(33):7825-30. doi: 10.1364/AO.53.007825.
A fiber-optics reflection probe based on fiber Fabry-Perot interference (FFPI) is proposed and experimentally demonstrated. The sensing structure comprises an epoxy resin (ER)-based cap on the end-face of the single-mode fiber. A well-defined interference spectrum is obtained by the reflective beams of two surfaces of the ER cap. The simultaneous measurements, including fringe contrast-referenced for the surrounding refractive index (SRI) and wavelength-referenced for temperature, have been achieved via selective interference dips monitoring. Experimental results indicate that the proposed FFPI presents an SRI sensitivity of 57.69 dB/RIU in the measurement range of 1.33-1.40 RIU and a temperature sensitivity of 0.98 pm·μm·°C with per unit cavity length in the range of 30°C-70°C. The proposed sensor has advantages of being compact and robust, making it an alternative candidate as a smart sensor in chemical and biological applications.
提出并通过实验验证了一种基于光纤法布里 - 珀罗干涉(FFPI)的光纤反射探头。传感结构包括单模光纤端面上基于环氧树脂(ER)的帽盖。通过ER帽盖两个表面的反射光束获得明确的干涉光谱。通过选择性干涉条纹监测实现了同时测量,包括用于周围折射率(SRI)的条纹对比度参考测量和用于温度的波长参考测量。实验结果表明,所提出的FFPI在1.33 - 1.40 RIU的测量范围内呈现出57.69 dB/RIU的SRI灵敏度,在30°C - 70°C范围内每单位腔长的温度灵敏度为0.98 pm·μm·°C。所提出的传感器具有紧凑且坚固的优点,使其成为化学和生物应用中智能传感器的替代候选方案。