Liang Zijun, Wang Chao, Tang Yaqi, Jiang Shoulin, Zhong Xianjie, Zhang Zhe, Dai Rui
Future Technology School, Shenzhen Technology University, Shenzhen 518118, China.
College of Engineering Physics, Shenzhen Technology University, Shenzhen 518118, China.
Sensors (Basel). 2025 Jul 14;25(14):4390. doi: 10.3390/s25144390.
We demonstrate an all-fiber, high-sensitivity, dual-parameter sensor for humidity and temperature. The sensor consists of a symmetrical, non-adiabatic, tapered, single-mode optical fiber, operating at the wavelength near the dispersion turning point, and a cascaded fiber Bragg grating (FBG) for temperature compensation. At one end of the fiber's tapered region, part of the fundamental mode is coupled to a higher-order mode, and vice versa at the other end. Under the circumstances that the two modes have the same group index, the transmission spectrum would show an interference fringe with uneven dips. In the tapered region of the sensor, some of the light transmits to the air, so it is sensitive to changes in the refractive index caused by the ambient humidity. In the absence of moisture-sensitive materials, the humidity sensitivity of our sensor sample can reach -286 pm/%RH. In order to address the temperature and humidity crosstalk and achieve a dual-parameter measurement, we cascaded a humidity-insensitive FBG. In addition, the sensor has a good humidity stability and a response time of 0.26 s, which shows its potential in fields such as medical respiratory dynamic monitoring.
我们展示了一种用于湿度和温度的全光纤、高灵敏度双参数传感器。该传感器由一根对称、非绝热、锥形单模光纤组成,工作在色散转折点附近的波长处,以及一个用于温度补偿的级联光纤布拉格光栅(FBG)。在光纤锥形区域的一端,部分基模耦合到高阶模,另一端则反之。在两种模式具有相同群折射率的情况下,传输光谱会显示出具有不均匀凹陷的干涉条纹。在传感器的锥形区域,部分光传输到空气中,因此它对环境湿度引起的折射率变化敏感。在没有湿度敏感材料的情况下,我们的传感器样品的湿度灵敏度可达-286 pm/%RH。为了解决温度和湿度串扰并实现双参数测量,我们级联了一个对湿度不敏感的FBG。此外,该传感器具有良好的湿度稳定性和0.26 s的响应时间,这表明其在医学呼吸动态监测等领域具有潜力。