Sun Bing, Huang Yijian, Liu Shen, Wang Chao, He Jun, Liao Changrui, Yin Guolu, Zhao Jing, Liu Yinjie, Tang Jian, Zhou Jiangtao, Wang Yiping
Opt Express. 2015 Jun 1;23(11):14596-602. doi: 10.1364/OE.23.014596.
We demonstrated a compact and highly-sensitive curvature sensor based on a Mach-Zehnder interferometer created in a photonic crystal fiber. Such a Mach-Zehnder interferometer consisted of a peanut-like section and an abrupt taper achieved by use of an optimized electrical arc discharge technique, where only one dominating cladding mode was excited and interfered with the fundamental mode. The unique structure exhibited a high curvature sensitivity of 50.5 nm/m within a range from 0 to 2.8 m, which made it suitable for high-sensitivity curvature sensing in harsh environments. Moreover, it also exhibited a temperature sensitivity of 11.7 pm/°C.
我们展示了一种基于光子晶体光纤中创建的马赫-曾德尔干涉仪的紧凑型高灵敏度曲率传感器。这种马赫-曾德尔干涉仪由一个花生状部分和一个通过使用优化的电弧放电技术实现的突然变细部分组成,其中仅激发一种主导包层模式并与基模发生干涉。这种独特的结构在0至2.8米的范围内表现出50.5纳米/米的高曲率灵敏度,这使其适用于恶劣环境中的高灵敏度曲率传感。此外,它还表现出11.7皮米/°C的温度灵敏度。