Zhang Zelin, Lu Yuangang, Peng Jianqin, Ji Zhengyuan
Opt Lett. 2021 Apr 1;46(7):1776-1779. doi: 10.1364/OL.419160.
The detection of the surrounding environment is one of the most fundamental challenges in optical fiber sensors research. In this Letter, we report two new, to the best of our knowledge, phenomena in large effective area fiber (LEAF), which are the linear dependence of the radial acoustic mode induced forward Brillouin scattering (FBS) spectral linewidth on temperature and the linear dependence of the radial acoustic mode induced FBS spectral frequency shift on acoustic impedance. By utilizing these linear relationships, we present a novel temperature and acoustic impedance simultaneous measurement method based on FBS in LEAF. With a fiber Sagnac loop structure, the obtained measurement uncertainties of temperature and acoustic impedance surrounding LEAF are 0.1°C and 0.006/(⋅), respectively. The corresponding measurement uncertainties in the form of relative percentage values are 0.5% and 0.4%, respectively.
周围环境的检测是光纤传感器研究中最基本的挑战之一。在本信函中,据我们所知,我们报告了大有效面积光纤(LEAF)中的两种新现象,即径向声学模式诱导的前向布里渊散射(FBS)光谱线宽与温度的线性关系以及径向声学模式诱导的FBS光谱频移与声阻抗的线性关系。通过利用这些线性关系,我们提出了一种基于LEAF中FBS的新型温度和声阻抗同时测量方法。采用光纤萨尼亚克环结构,获得的LEAF周围温度和声阻抗的测量不确定度分别为0.1°C和0.006/(⋅)。以相对百分比值形式表示的相应测量不确定度分别为0.5%和0.4%。