Directional Magnetic Field Sensing Based on Few Mode Fiber Long-Period Grating with Spatial Refractive Index Modulation

Abstract

We present a highly sensitive directional magnetic field sensor based on a long-period fiber grating (LPFG) inscribed in few-mode fiber (FMF) and combined with magnetic fluid (MF). The unique spatial refractive index modulation profile of the FMF-LPFG allows for the simultaneous measurement of magnetic field intensity, direction, and temperature. The interaction between the anisotropic refractive index of the MF and the LPFG is exploited to achieve directional magnetic field sensitivity, with a maximum intensity sensitivity of 717.5 pm/mT at 0° and directional sensitivity of 163.3 pm/degree at 10.7 mT. Temperature cross-talk is mitigated by monitoring independent interference dips, enabling reliable dualparameter sensing. The proposed FMF-LPFG sensor demonstrates excellent intensity sensitivity, precise directional detection, and effective temperature monitoring. This work offers a robust and versatile solution for high-precision magnetic field monitoring in applications ranging from industrial sensing to biomedical diagnostics.

Publication DOI: https://doi.org/10.1109/JSEN.2025.3566555
Divisions: College of Engineering & Physical Sciences > Aston Institute of Photonics Technology (AIPT)
Funding Information: This work was supported by National Natural Science Foundation of China (62075124), China Scholarship Council (202306890090).
Additional Information: Copyright © 2025 IEEE. All rights reserved, including rights for text and data mining and training of artificial intelligence and similar technologies. Personal use is permitted, but republication/redistribution requires IEEE permission. See https://www.ieee.org/publications/rights/index.html for more information.
Uncontrolled Keywords: Sensors,Magnetic fields,Claddings,Optical fiber sensors,Refractive index,Magnetic sensors,Couplings,Sensitivity,Optical fibers,Gratings,Directional magnetic field sensor,Long-period fiber grating,Spatial refractive index modulation
Publication ISSN: 1558-1748
Last Modified: 29 May 2025 16:21
Date Deposited: 21 May 2025 15:09
Full Text Link:
Related URLs: https://ieeexpl ... ument/10994257/ (Publisher URL)
http://www.scop ... tnerID=8YFLogxK (Scopus URL)
PURE Output Type: Article
Published Date: 2025-05-08
Published Online Date: 2025-05-08
Accepted Date: 2025-05-01
Authors: Ma, Yuehui
Jiang, Chen
Chen, Siyu
Mou, Chengbo
Zhou, Kaiming (ORCID Profile 0000-0002-6011-1912)
Liu, Yunqi

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