Yang Minghong, Dai Jixiang, Zhou Ciming, Jiang Desheng
National Engineering Laboratory for Optical Fiber Sensors, Wuhan University of Technology, Luoshi Street 122, Wuhan, China.
Opt Express. 2009 Nov 9;17(23):20777-82. doi: 10.1364/OE.17.020777.
Different from usually-used bulk magnetostrictive materials, magnetostrictive TbDyFe thin films were firstly proposed as sensing materials for fiber-optic magnetic field sensing characterization. By magnetron sputtering process, TbDyFe thin films were deposited on etched side circle of a fiber Bragg Grating (FBG) as sensing element. There exists more than 45pm change of FBG wavelength when magnet field increase up to 50 mT. The response to magnetic field is reversible, and could be applicable for magnetic and current sensing.
与通常使用的块状磁致伸缩材料不同,磁致伸缩TbDyFe薄膜首次被提出作为用于光纤磁场传感表征的传感材料。通过磁控溅射工艺,将TbDyFe薄膜沉积在光纤布拉格光栅(FBG)的蚀刻侧圆上作为传感元件。当磁场增加到50 mT时,FBG波长变化超过45pm。对磁场的响应是可逆的,可用于磁场和电流传感。