Chen George Y, Wang Jinyu, Lancaster David G
Laser Physics and Photonic Devices Laboratories, School of Engineering, University of South Australia, Mawson Lakes, 5095 SA, Australia.
Key Laboratory of Optical Fiber Technology of Shandong Province; Qilu University of Technology (Shandong Academy of Sciences), Jinan 250014, China.
Sensors (Basel). 2020 Apr 28;20(9):2499. doi: 10.3390/s20092499.
The evanescent fields along multimode fibers are usually relatively weak. To enhance the sensitivity of the resulting sensors, skew rays have been exploited for their larger number of total internal reflections and their more comprehensive spread over the fiber surface. The uniform distribution of light-matter interactions across the fiber surface facilitates high sensitivity through an increased interaction area, while mitigating the risk of laser-induced coating-material damage and photobleaching. Power-dependent measurements are less susceptible to temperature effects than interferometric techniques, and place loose requirements on the laser source. This review highlights the key developments in this area, while discussing the benefits, challenges as well as future development.
多模光纤中的倏逝场通常相对较弱。为了提高所得传感器的灵敏度,倾斜光线因其大量的全内反射以及在光纤表面更广泛的传播而被利用。光与物质相互作用在光纤表面的均匀分布通过增加相互作用面积促进了高灵敏度,同时降低了激光诱导涂层材料损伤和光漂白的风险。与干涉测量技术相比,功率相关测量对温度效应的敏感度较低,并且对激光源的要求较宽松。本综述突出了该领域的关键进展,同时讨论了其优点、挑战以及未来发展。