论文标题
基于单个旋转轨道扭矩异常霍尔设备的矢量磁力计
A vector magnetometer based on a single spin-orbit torque anomalous Hall device
论文作者
论文摘要
在许多应用中,测量具有高空间分辨率和低成本的磁场的向量信息是必不可少的,但对于由多个传感器组成的现有磁力计仍然是一个挑战。在这里,我们报告了一个基于单个设备的矢量磁力计,该矢量磁力计通过自旋轨道扭矩启用,能够使用超帕磁性铁磁铁(FM)/重金属(HM)双层的谐波大厅电阻测量矢量磁场。在交流驱动电流下,FM/HM双层的第一和第二谐波霍尔电阻分别与磁场的垂直和纵向分量(沿着电流方向)显示线性关系。通过使用带有两个正交臂的L形大厅设备,我们可以同时测量所有三个场组件,从而在三维空间中检测磁场的振幅和方向。作为概念的证明,我们证明了三个坐标平面上的角位置感测和由永久磁体产生的磁场的矢量映射,这两者都与仿真结果非常吻合。使用理论模型讨论了大场口垂直和纵向场分量之间的串扰。
In many applications, the ability to measure the vector information of a magnetic field with high spatial resolution and low cost is essential, but it is still a challenge for existing magnetometers composed of multiple sensors. Here, we report a single-device based vector magnetometer, which is enabled by spin-orbit torque, capable of measuring a vector magnetic field using the harmonic Hall resistances of a superparamagnetic ferromagnet (FM)/heavy metal (HM) bilayer. Under an ac driving current, the first and second harmonic Hall resistances of the FM/HM bilayer show a linear relationship with the vertical and longitudinal component (along the current direction) of the magnetic field, respectively. By employing a L-shaped Hall device with two orthogonal arms, we can measure all the three field components simultaneously, so as to detect both the amplitude and direction of magnetic field in a three-dimensional space. As proof of concepts, we demonstrate both angular position sensing on the three coordinate planes and vector mapping of magnetic field generated by a permanent magnet, both of which are in good agreement with the simulation results. Crosstalk between vertical and longitudinal field components at large field is discussed using theoretical models.