Yang Zongru, Yuan Weihao, Yu Changyuan
Photonics Research Centre, Department of Electronic and Information Engineering, The Hong Kong Polytechnic University, Hong Kong, China.
Sensors (Basel). 2021 Nov 29;21(23):7956. doi: 10.3390/s21237956.
In this paper, the hollow core Bragg fiber (HCBF)-based sensor based on anti-resonant reflecting optical waveguide (ARROW) model is proposed and experimentally demonstrated for simultaneous measurement of curvature and temperature by simply sandwiching a segment of HCBF within two single-mode fibers (SMFs). The special construction of a four-bilayer Bragg structure provides a well-defined periodic interference envelope in the transmission spectrum for sensing external perturbations. Owing to different sensitivities of interference dips, the proposed HCBF-based sensor is capable of dual-parameter detection by monitoring the wavelength shift. The highest curvature sensitivity of the proposed sensor is measured to be 74.4 pm/m in the range of 1.1859-2.9047 m with the adjusted R square value of 0.9804. In the meanwhile, the best sensitivity of temperature sensing was detected to be 16.8 pm/°C with the linearity of 0.997 with temperature range varying from 25 to 55 °C. Furthermore, with the aid of the 2 × 2 matrix, the dual demodulation of curvature and temperature can be carried out to realize the simultaneous measurement of these two parameters. Besides dual-parameter sensing based on wavelength shift, the proposed sensor can also measure temperature-insensitive curvature by demodulating the intensity of resonant dips.
本文提出了一种基于反谐振反射光波导(ARROW)模型的空心布拉格光纤(HCBF)传感器,并通过将一段HCBF简单地夹在两根单模光纤(SMF)之间进行了实验验证,可同时测量曲率和温度。四层布拉格结构的特殊构造在传输光谱中提供了明确的周期性干涉包络,用于感知外部扰动。由于干涉凹陷的敏感性不同,所提出的基于HCBF的传感器能够通过监测波长偏移进行双参数检测。在所提出的传感器中,在1.1859 - 2.9047 m范围内测量到的最高曲率灵敏度为74.4 pm/m,调整后的R平方值为0.9804。同时,在25至55°C的温度范围内,检测到的最佳温度传感灵敏度为16.8 pm/°C,线性度为0.997。此外,借助2×2矩阵,可以进行曲率和温度的双解调,以实现这两个参数的同时测量。除了基于波长偏移的双参数传感外,所提出的传感器还可以通过解调谐振凹陷的强度来测量对温度不敏感的曲率。