Instituto de Telecomunicações, Campus Universitário de Santiago, 3810-193 Aveiro, Portugal.
Department of Physics & I3N, University of Aveiro, Campus Universitário de Santiago, 3810-193 Aveiro, Portugal.
Sensors (Basel). 2018 Dec 7;18(12):4325. doi: 10.3390/s18124325.
Magnetic field sensing is an important issue for many application areas, such as in the military, industry and navigation. The current sensors used to monitor this parameter can be susceptible to electromagnetic interferences, however due to their advantages over the traditional sensors, the optical fiber devices could be an excellent alternative. Furthermore, magnetic fluid (MF) is a new type of functional material which possesses outstanding properties, including Faraday effect, birefringence, tunable refractive index and field dependent transmission. In this paper, the optical fiber magnetic field sensors using MF as sensing element are reviewed. Due to the extensive literature, only the most used sensing configurations are addressed and discussed, which include optical fiber grating, interferometry, surface plasmon resonance (SPR) and other schemes involving tailored (etched, tapered and U-shaped) fibers.
磁场感应是许多应用领域的重要问题,例如军事、工业和导航。目前用于监测这一参数的传感器可能容易受到电磁干扰,然而,由于光纤器件相对于传统传感器具有优势,它们可能是一种极好的替代品。此外,磁流体(MF)是一种新型的功能材料,具有出色的特性,包括法拉第效应、双折射、可调折射率和随场传输。在本文中,使用 MF 作为传感元件的光纤磁场传感器进行了综述。由于文献广泛,仅讨论和讨论了最常用的传感配置,包括光纤光栅、干涉测量、表面等离子体共振(SPR)和其他涉及定制(刻蚀、锥形和 U 型)光纤的方案。