论文标题

同时对微磁性的三轴扭矩测量

Simultaneous three-axis torque measurements of micromagnetism

论文作者

Fast, K. R., Thibault, J. A., Sauer, V. T. K., Dunsmore, M. G., Kav, A., Losby, J. E., Diao, Z., Luber, E. J., Belov, M., Freeman, M. R.

论文摘要

磁性扭矩的测量最常见于单个轴或扭矩的组件。这种测量对于尤其是薄膜结构的磁滞测量非常有用,其中高形各向异性产生了平面磁矩的接近比例性,沿垂直于平面内轴的磁性扭矩。引入了一种测量在微观和纳米级磁性材料上测量完整磁性扭矩矢量(三个正交扭矩组件)的技术。使用修改的单块硅在绝缘子谐振扭矩传感器中证明该方法。通过将传感器夹在一个点上,对所有三个正交扭矩组件的机械合规都可以最大化。机械振奋的AC曲Qu是由RF场驱动的,该RF场包含设备的每个基本扭转模式的频率分量,并且通过光位置敏感的检测读取了所得的位移。将测量值与机械扭矩的微磁模拟进行了比较,以增强信号的解释。作为应用程序的例子,同时观察净磁化中的滞后以及依赖场地各向异性的磁滞对交换偏见的研究非常有益。

Measurements of magnetic torque are most commonly preformed about a single axis or component of torque. Such measurements are very useful for hysteresis measurements of thin film structures in particular, where high shape anisotropy yields a near-proportionality of in-plane magnetic moment and the magnetic torque along the perpendicular in-plane axis. A technique to measure the full magnetic torque vector (three orthogonal torque components) on micro- and nano-scale magnetic materials is introduced. The method is demonstrated using a modified, single-paddle silicon-on-insulator resonant torque sensor. The mechanical compliances to all three orthogonal torque components are maximized by clamping the sensor at a single point. Mechanically-resonant AC torques are driven by an RF field containing a frequency component for each fundamental torsional mode of the device, and the resulting displacements read out through optical position-sensitive detection. The measurements are compared with micromagnetic simulations of the mechanical torque to augment the interpretation of the signals. As an application example, simultaneous observations of hysteresis in the net magnetization along with the field-dependent in-plane anisotropy is highly beneficial for studies of exchange bias.

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