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Compact magnetic-field sensor based on optical microfiber Michelson interferometer and Fe_3O_4 nanofluid

机译:基于光学微纤维迈克尔逊干涉仪和Fe_3O_4纳米流体的紧凑型磁场传感器

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摘要

We report a magnetic-field sensor by merging the advantages of optical fiber Michelson interferometers with that of magnetic fluid. Compact and low-cost optical fiber Michelson interferometers were first fabricated by a high-frequency CO_2 laser, and then they were inserted into glass capillaries with water-based Fe_3O_4 magnetic fluid as sensing elements. The sensing characteristics have been investigated and the experimental results show that the reflective spectrum of the fiber-magnetic sensor linearly shifted with the change of the magnetic-field strength that is perpendicular to the axial of the devices. The fiber-magnetic sensor with interference arm's diameter of 50 μm is most sensitive to the external magnetic field, and the sensitivity is up to 64.9 pm/mT, which is 20 times higher than that of 125 μm diameter.
机译:我们通过结合光纤迈克尔逊干涉仪的优势与磁性流体的优势,报告了一种磁场传感器。紧凑,低成本的迈克尔逊光纤干涉仪首先由高频CO_2激光器制造,然后将其插入以水基Fe_3O_4磁性流体为传感元件的玻璃毛细管中。对传感特性进行了研究,实验结果表明,光纤传感器的反射光谱随垂直于设备轴向的磁场强度的变化而线性变化。干涉臂直径为50μm的光纤传感器对外部磁场最敏感,灵敏度高达64.9 pm / mT,是125μm直径的20倍。

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