材料科学
马赫-曾德尔干涉仪
光学
光纤
折射率
灵敏度(控制系统)
熔接
干涉测量
光纤传感器
色散位移光纤
包层(金属加工)
包层模式
渐变折射率纤维
光电子学
单模光纤
归一化频率(单位)
保偏光纤
电子工程
物理
相位噪声
工程类
频率合成器
冶金
锁相环
作者
Fang Zhao,Dongrui Xiao,Weihao Lin,Yun Chen,Guoqing Wang,Jie Hu,Shuaiqi Liu,Feihong Yu,Weijie Xu,Xiaolu Yang,Yibin Liu,Liyang Shao,Perry Ping Shum,Weizhi Wang
标识
DOI:10.1109/jlt.2021.3118285
摘要
A fiber-optic Mach Zehnder interferometer (MZI) refractive index (RI) sensor based on a double peanut-shaped structure in Er-doped fiber with a section of tapered fiber was fabricated using fusion splicer and experimentally demonstrated. The double peanut-shaped structures placed at both ends of the sensor function as beam splitting/combining. Besides, the tapered region works as the sensing area. With RI changes, the optical path difference between the core mode and the cladding modes will change correspondingly, resulting in interference spectrum shifting. By monitoring the shift, the measured RI can be obtained. The experimental results show that the RI sensitivity was significantly improved compared with other types of peanut-shaped fiber sensors. By comparing different taper diameters, it is found that the finer the tapered fiber, the higher the sensitivity of measuring RI.High RI sensitivity of 441.56 nm/RIU is obtained in the experiments. Compared with the similar-structure sensor consisted of single-mode fiber (SMF), the sensitivity of the proposed sensor based on Er-doped fiber is 115.22 nm/RIU higher than that of the former. The proposed sensor has the characteristics of a compact structure. In addition, it has potential in environmental, medical, and aerospace monitoring applications.
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