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Magnetic field sensor based on a combination of a microfiber coupler covered with magnetic fluid and a Sagnac loop

机译:基于覆盖有磁流体的超细纤维耦合器和Sagnac环的组合的磁场传感器

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摘要

This paper proposes a novel magnetic field sensor based on a microfiber coupler (MFC) combined with a magnetic fluid (MF) in a Sagnac loop formed from a polarization maintaining fiber (PMF). Thanks to the small (~2.6 μm) waist diameter of the MFC, the resulting interference is strongly influenced by the presence of the MF and this leads to the desirable high sensitivity of the structure to the applied magnetic field. The maximum magnetic field sensitivities of −100 pm/mT and −488 pm/mT have been experimentally demonstrated with the PMF lengths of 75 cm and 20 cm respectively in the range of magnetic field strengths from 0 to 200 mT. The dependence of the magnetic field orientation on the performance of the proposed sensor was also examined. The proposed magnetic field sensor is advantageous for applications requiring higher sensitivity over a wide magnetic field range.
机译:本文提出了一种新型的磁场传感器,该传感器基于微纤维耦合器(MFC)与磁流体(MF)结合在由保偏光纤(PMF)形成的Sagnac环路中。由于MFC的腰部直径小(约2.6μm),所产生的干扰会受到MF的强烈影响,从而导致结构对所施加的磁场具有理想的高灵敏度。在磁场强度为0至200 mT的范围内,PMF长度分别为75 cm和20 cm时,已通过实验证明最大磁场敏感度为−100 pm / mT和-488 pm / mT。还检查了磁场方向对所提出的传感器性能的依赖性。所提出的磁场传感器对于在宽磁场范围内需要更高灵敏度的应用是有利的。

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