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A magnetoelectric flux gate: new approach for weak DC magnetic field detection

机译:磁通量门:检测弱直流磁场的新方法

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摘要

The magnetic flux gate sensors based on Faraday’s Law of Induction are widely used for DC or extremely low frequency magnetic field detection. Recently, as the fast development of multiferroics and magnetoelectric (ME) composite materials, a new technology based on ME coupling effect is emerging for potential devices application. Here, we report a magnetoelectric flux gate sensor (MEFGS) for weak DC magnetic field detection for the first time, which works on a similar magnetic flux gate principle, but based on ME coupling effect. The proposed MEFGS has a shuttle-shaped configuration made of amorphous FeBSi alloy (Metglas) serving as both magnetic and magnetostrictive cores for producing a closed-loop high-frequency magnetic flux and also a longitudinal vibration, and one pair of embedded piezoelectric PMN-PT fibers ([011]-oriented Pb(Mg,Nb)O3-PbTiO3 single crystal) serving as ME flux gate in a differential mode for detecting magnetic anomaly. In this way, the relative change in output signal of the MEFGS under an applied DC magnetic anomaly of 1 nT was greatly enhanced by a factor of 4 to 5 in comparison with the previous reports. The proposed ME flux gate shows a great potential for magnetic anomaly detections, such as magnetic navigation, magnetic based medical diagnosis, etc.
机译:基于法拉第感应定律的磁通门传感器广泛用于直流或极低频磁场检测。近年来,随着多铁磁电复合材料的飞速发展,一种基于ME耦合效应的新技术正在为潜在的器件应用而涌现。在这里,我们首次报道了一种用于弱直流磁场检测的磁通栅传感器(MEFGS),它基于相似的磁通栅原理,但是基于ME耦合效应。拟议的MEFGS具有由非晶FeBSi合金(Metglas)制成的梭形结构,既可以用作磁芯和磁致伸缩芯,以产生闭环高频磁通量,也可以产生纵向振动,以及一对嵌入式压电式PMN-PT光纤([011]取向的Pb(Mg,Nb)O3-PbTiO3单晶)以微分模式充当ME磁通门,用于检测磁异常。这样,与以前的报告相比,在施加的1 nT直流磁异常下MEFGS的输出信号的相对变化大大提高了4到5倍。提出的ME磁通门在磁异常检测方面具有巨大潜力,例如磁导航,基于磁的医学诊断等。

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