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Femtosecond laser inscribed Bragg sensor in Terfenol-D coated optical fibre with ablated microslot for the detection of static magnetic fields

机译:飞秒激光在带有腐蚀微缝隙的Terfenol-D涂层光纤中内接布拉格传感器,用于检测静磁场

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摘要

A novel device for the detection and characterisation of static magnetic fields is presented. It consists of a femtosecond laser inscribed fibre Bragg grating (FBG) that is incorporated into an optical fibre with a femtosecond laser micro-machined slot. The symmetry of the fibre is broken by the micro-slot, producing non-uniform strain across the fibre cross section. The sensing region is coated with Terfenol-D making the device sensitive to static magnetic fields, whereas the symmetry breaking results in a vectorial sensor for the detection of magnetic fields as low as 0.046 mT with a resolution of ±0.3mT in transmission and ±0.7mT in reflection. The sensor output is directly wavelength encoded from the FBG filtering, leading to simple demodulation through the monitoring of wavelength shifts that result as the fibre structure changes shape in response to the external magnetic field. The use of a femtosecond laser to both inscribe the FBG and micro-machine the slot in a single stage, prior to coating the device, significantly simplifies the sensor fabrication.
机译:提出了一种用于检测和表征静磁场的新型装置。它由飞秒激光内切光纤布拉格光栅(FBG)组成,该光栅与飞秒激光微加工槽缝结合到光纤中。纤维的对称性被微缝隙破坏,在纤维横截面上产生不均匀的应变。传感区域涂有Terfenol-D,使该器件对静磁场敏感,而对称性破坏导致矢量传感器可检测到低至0.046 mT的磁场,透射分辨率为±0.3mT,分辨率为±0.7反射中的mT。传感器输出直接由FBG滤波进行波长编码,从而通过监视波长偏移而进行简单解调,该波长偏移是由于光纤结构响应于外部磁场而改变形状而导致的。在涂覆设备之前,使用飞秒激光在单个阶段内刻入FBG并在狭槽中进行微加工都会极大地简化传感器的制造。

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