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具有垂直各向异性磁各向异性的自旋电流纳米振荡器中的动力学Skyrmion 态。

Dynamical skyrmion state in a spin current nano-oscillator with perpendicular magnetic anisotropy.

机构信息

Department of Physics, Emory University, Atlanta, Georgia 30322, USA.

出版信息

Phys Rev Lett. 2015 Apr 3;114(13):137201. doi: 10.1103/PhysRevLett.114.137201. Epub 2015 Mar 31.

Abstract

We study the spectral characteristics of spin current nano-oscillators based on the Pt/[Co/Ni] magnetic multilayer with perpendicular magnetic anisotropy. By varying the applied magnetic field and current, both localized and propagating spin wave modes of the oscillation are achieved. At small fields, we observe an abrupt onset of the modulation sidebands. We use micromagnetic simulations to identify this state as a dynamical magnetic skyrmion stabilized in the active device region by spin current injection, whose current-induced dynamics is accompanied by the gyrotropic motion of the core due to the skew deflection. Our results demonstrate a practical route for controllable skyrmion manipulation by spin current in magnetic thin films.

摘要

我们研究了基于具有垂直各向异性的 Pt/[Co/Ni] 磁性多层膜的自旋电流纳米振荡器的光谱特性。通过改变外加磁场和电流,我们实现了局域和传播自旋波模式的振荡。在小磁场下,我们观察到调制边带的突然出现。我们使用微磁模拟来确定这种状态是通过自旋电流注入在有源器件区域稳定的动态磁 skyrmion,其电流诱导的动力学伴随着由于斜偏导致的核心的旋进运动。我们的结果证明了在磁性薄膜中通过自旋电流进行可控 skyrmion 操纵的实际途径。

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