Far-Field Spatial Response of Off-Diagonal GMI Wire Magnetometers. Application to Magnetic Field Sources Sensing

Magnetism Pub Date : 2024-02-21 DOI:10.3390/magnetism4010004
Julien Gasnier, Christophe Dolabdjian
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Abstract

Studying the spatial response of a single-axis magnetometer could be the key parameter to optimize the ultimate performances of magnetic heads of detection. Indeed, the problem of non-orthogonality, misalignment, and 3D spatial response could be improved based on the knowledge of the 3D sensor spatial response. In that way, we have investigated the latter for our giant magneto-impedance (GMI) magnetometer, as a far-field pattern, by using a three-axis Helmholtz coil system. Firstly, we calibrate our device and secondly, we apply a specific 3D magnetic field to obtain this pattern. The latter helps to observe the directional or angular dependence of the sensor sensitivity versus the applied magnetic field, as we exemplified. The results confirm the excellent directivity of our off-diagonal GMI magnetometer. The evaluation of the associated error compared to an ideal vector magnetometer is also given and discussed.
非对角 GMI 线磁力计的远场空间响应。应用于磁场源传感
研究单轴磁力计的空间响应可能是优化磁探测头最终性能的关键参数。事实上,基于对三维传感器空间响应的了解,非正交、错位和三维空间响应问题都可以得到改善。为此,我们使用三轴亥姆霍兹线圈系统,对巨磁阻抗(GMI)磁力计的远场模式进行了研究。首先,我们校准了我们的设备,其次,我们应用特定的三维磁场来获得这种模式。后者有助于观察传感器灵敏度与外加磁场的方向或角度关系,我们对此进行了举例说明。结果证实了我们的非对角 GMI 磁强计具有出色的指向性。与理想的矢量磁强计相比,我们还对相关误差进行了评估和讨论。
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