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由自旋转移力矩驱动的纳米磁体动力学的时域测量。

Time-domain measurements of nanomagnet dynamics driven by spin-transfer torques.

作者信息

Krivorotov I N, Emley N C, Sankey J C, Kiselev S I, Ralph D C, Buhrman R A

机构信息

Cornell University, Ithaca, NY 14853, USA.

出版信息

Science. 2005 Jan 14;307(5707):228-31. doi: 10.1126/science.1105722.

Abstract

We present time-resolved measurements of gigahertz-scale magnetic dynamics caused by torque from a spin-polarized current. By working in the time domain, we determined the motion of the magnetic moment throughout the process of spin-transfer-driven switching, and we measured turn-on times of steady-state precessional modes. Time-resolved studies of magnetic relaxation allow for the direct measurement of magnetic damping in a nanomagnet and prove that this damping can be controlled electrically using spin-polarized currents.

摘要

我们展示了由自旋极化电流产生的扭矩所引起的千兆赫兹级磁动力学的时间分辨测量结果。通过在时域中开展研究,我们确定了自旋转移驱动切换全过程中磁矩的运动情况,并测量了稳态进动模式的开启时间。对磁弛豫的时间分辨研究使得对纳米磁体中的磁阻尼进行直接测量成为可能,并且证明了这种阻尼可以通过自旋极化电流进行电控制。

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