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Magnetic field sensor based on asymmetric optical fiber taper and magnetic fluid

机译:基于非对称光纤锥度和磁流体的磁场传感器

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We report an optical fiber magnetic field sensor by merging the advantages of magnetic fluid and a core-cladding-mode interferometer which is directly fabricated on a standard single-mode fiber by using an arc fusion splicing machine. The sensing performances of the sensors are controllable by designing the parameters of the asymmetric-tapered structure. Experimental results show that the sensor with axial offset of 168 μm and taper waist diameter of 45 μm not only has good optical properties but also a relatively high magnetic-field sensitivity of ~162.06 pm/mT ranging from 0 to 21.4mT. The proposed sensors would find potential applications in weak magnetic sensing fields.
机译:我们通过结合磁流体的优势和通过使用电弧熔接机直接在标准单模光纤上制造的纤芯包层干涉仪来报告光纤磁场传感器。通过设计不对称锥形结构的参数,可以控制传感器的传感性能。实验结果表明,具有168μm轴向偏移和45μm锥形腰部直径的传感器不仅具有良好的光学性能,而且在0至21.4mT的相对较高的磁场灵敏度〜162.06 pm / mT。拟议中的传感器将在弱磁传感领域中找到潜在的应用。

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