Highly Sensitive Magnetic Field Sensor Based on Few Mode Fiber Interferometry

干涉测量 光纤传感器 材料科学 光纤 磁场 光学 光电子学 物理 量子力学
作者
Jiahao Guo,Wei Wang,Linpeng Dong,Xiaohui Li,Zilong Guo,Xizhao Du,Junying Zhang
出处
期刊:IEEE Sensors Journal [Institute of Electrical and Electronics Engineers]
卷期号:24 (10): 16179-16187 被引量:1
标识
DOI:10.1109/jsen.2024.3384925
摘要

This paper proposes an all-fiber Mach-Zehnder interferometer (MZI) magnetic field sensor based on few mode fiber (FMF) and hollow core fiber (HCF). The proposed SFHS (SMF-FMF-HCF-SMF) structure is achieved by fusion splicing FMF and HCF between two single-mode fibers (SMFs), with the offset fusion splicing technique implemented between SMF and FMF. Through the offset fusion splicing, high-order modes are more easily excited when light propagates in the FMF, while the structural characteristics of the FMF reduce the number of excited high-order modes, thus avoiding excessive interferences and spectra overlay effects caused by them. In the HCF region, light is coupled and confined within the cladding of the HCF. Low-order mode and high-order modes propagate in the cladding and form a multimode interference. This phenomenon enhances the sensor's sensitivity to environmental changes. The sensing structure is enclosed within a capillary tube filled with magnetic fluid (MF) which exhibits tunable refractive index properties. By subjecting the MF-filled SFHS structure to varying magnetic fields, the refractive index modulation of the MF facilitates the measurement of magnetic field intensities. Moreover, due to the circular asymmetry of the sensor structure, it exhibits sensitivity to the direction of the magnetic field. The experimental results indicate that the proposed sensing structure exhibits a magnetic field sensitivity of -0.28 dB/Oe at a wavelength of 1583 nm, and can be applied as a magnetic field vector sensor.
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