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Simple structure of tapered FBG filled with magnetic fluid to realize magnetic field sensor

机译:填充磁流体的锥形光纤光栅结构简单,实现磁场传感器

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摘要

A magnetic field sensor based on tapered FBG wrapped in magnetic fluid is proposed and experimented. The center of FBG is tapered to form a nanofiber, thereby enhancing the interaction between structure and magnetic fluid. The magnetic fluid's perception of the external magnetic field will affect the optical path of the nanofiber in the center of the tapered FBG, which is reflected in the transmission spectrum of the sensor. The manufacturing method is simpler and more sensitive to external changes. The experimental results show that the intensity change of the sensor has good linearity corresponding to magnetic flux density, and the sensitivity is 0.035 dB/mT. The sensor can also measure the magnetic field below the critical magnetic field. After packaging with a glass tube, the magnetic fluid has difference responses to different directions of the magnetic field.
机译:提出并实验了一种基于包裹在磁流体中的锥形光纤光栅的磁场传感器。光纤光栅的中心呈锥形,形成纳米纤维,从而增强了结构与磁流体之间的相互作用。磁流体对外界磁场的感知会影响锥形光纤光栅中心的纳米纤维的光路,这反映在传感器的透射光谱中。制造方法更简单,对外部变化更敏感。实验结果表明,传感器的强度变化与磁通密度对应具有良好的线性度,灵敏度为0.035 dB/mT。该传感器还可以测量临界磁场以下的磁场。用玻璃管包装后,磁流体对磁场的不同方向有不同的响应。

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