Kim Young Ho, Park Seong Jun, Jeon Sie-Wook, Ju Seongmin, Park Chang-Soo, Han Won-Taek, Lee Byeong Ha
School of Information and Communications, Gwangju Institute of Science and Technology, 123 Cheomdan-gwagiro, Buk-gu, Gwangju, 500-712, South Korea.
Opt Express. 2012 Oct 8;20(21):23744-54. doi: 10.1364/OE.20.023744.
A fiber-optic interferometric probe based on a two-mode fiber (TMF) is proposed and demonstrated for measuring the thermo-optic coefficients (TOCs) of liquid samples. The proposed probe can be simply fabricated by fusion-splicing a short piece of TMF to a lead single mode fiber (SMF) with small lateral offset, which makes interference between LP(01) and LP(02) modes. The sensing responses of the probe to temperature and surrounding refractive index (SRI) have been experimentally investigated to show the capability of simultaneous measurements; the phase change of the reflection spectrum was related to temperature variation and the intensity change was to SRI variation. The data analysis is made not only in the spectral domain but in the Fourier domain also to effectively quantify the measurements. The TOCs of several liquid samples including water, ethanol, and acetone have been obtained with the proposed method.
提出并演示了一种基于双模光纤(TMF)的光纤干涉式探头,用于测量液体样品的热光系数(TOC)。所提出的探头可以通过将一小段TMF与一根横向偏移量小的单模光纤(SMF)进行熔接来简单制作,这会使LP(01)和LP(02)模式之间产生干涉。对探头对温度和周围折射率(SRI)的传感响应进行了实验研究,以展示其同时测量的能力;反射光谱的相位变化与温度变化相关,强度变化与SRI变化相关。不仅在光谱域进行数据分析,还在傅里叶域进行数据分析,以有效量化测量结果。利用所提出的方法获得了包括水、乙醇和丙酮在内的几种液体样品的TOC。