光学
法布里-珀罗干涉仪
干涉测量
游标尺
磁强计
光纤
谐波
材料科学
光纤传感器
折射率
物理
激光器
磁场
量子力学
作者
Tianqi Yan,Chao Jiang,Ling Gao,Zihao Guo,Bowen Han,Xiaoshan Guo,Simei Sun,Tingshui Cao,Changning Liu,Kai Li,Han Zhang,Huiling Huang
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2024-12-13
卷期号:32 (27): 48875-48875
被引量:10
摘要
This article experimentally validates a high-sensitivity vector magnetic field (MF) sensor based on two parallel Fabry-Perot interferometers (FPIs). Firstly, two standard single-mode fibers are interposed into a capillary tube to constitute a cantilever beam structure FPI 1 . FPI 1 achieved a high axial strain sensitivity of 15.0 pm/µε. Then, FPI 1 was bonded with the magnetostrictive material Terfenol-D, and the sensitivity of its MF intensity and direction reached 91.43 pm/mT and −12.75 pm/°, respectively. Finally, a reference interferometer FPI 2 was matched to FPI 1 to constitute the harmonic Vernier effect sensor S 1 . The average sensitivity of the MF intensity of S 1 reaches −4.308 nm/mT, and the MF direction sensitivity of S 1 reaches 892.3 pm/°. It amplifies the MF intensity and direction sensitivity of FPI 1 by 47 times and 33.0 times, respectively. Therefore, the proposed MF sensor can measure MF intensity and direction with high sensitivity. Additionally, the proposed sensor only involves fiber optic cutting, splicing, and cold bonding during the manufacturing process, without damaging the structure of the fiber optic. Therefore, it is easy to manufacture, highly reproducible, cost-effective, structurally robust, and easy to operate. It is one of the preferred choices for vector MF sensors in practical applications.
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