Guo Jiachen, Chang Min, Xiao Yinfeng, Song Qiuheng, Zhao Dong, Jia Bo
Appl Opt. 2021 Jul 20;60(21):5990-5994. doi: 10.1364/AO.422732.
A new optical fiber humidity sensor with high sensitivity is reported. We effectively control the light-intensity changes in a smaller sensing area and achieve a significant increase in sensitivity by adjusting the depth of the evanescent field of the tapered fiber. The sensor is designed with an 8 µm diameter single-mode tapered fiber structure coated with a thickness of a 10 mm length carbomer layer in the tapered area. The average and maximum relative humidity (RH) sensitivities are 2.59 dB/%RH and 5.43 dB/%RH in the range of 68%-90%. To our best knowledge, the sensitivity of the sensor is highest compared with that of the previously reported. Moreover, the fast response time and recovery time of the sensor are ideal. In addition, the proposed humidity sensor has good repeatability and lower-temperature cross talk. Due to the excellent indicators, the proposed sensor has promising potential for highly sensitive RH sensing applications, especially early warning of special environments.
报道了一种新型的高灵敏度光纤湿度传感器。我们在较小的传感区域内有效控制光强变化,并通过调整锥形光纤倏逝场的深度实现了灵敏度的显著提高。该传感器采用直径为8 µm的单模锥形光纤结构设计,在锥形区域涂覆有厚度为10 mm长度的卡波姆层。在68%-90%的范围内,平均相对湿度(RH)灵敏度和最大相对湿度灵敏度分别为2.59 dB/%RH和5.43 dB/%RH。据我们所知,与先前报道的传感器相比,该传感器的灵敏度最高。此外,该传感器的快速响应时间和恢复时间很理想。此外,所提出的湿度传感器具有良好的重复性和较低的温度串扰。由于这些优异的指标,所提出的传感器在高灵敏度RH传感应用中具有广阔的潜力,特别是在特殊环境的早期预警方面。