论文标题

沮丧的磁系统中的电流驱动的天际电位

Current-driven skyrmionium in a frustrated magnetic system

论文作者

Xia, Jing, Zhang, Xichao, Ezawa, Motohiko, Tretiakov, Oleg A., Hou, Zhipeng, Wang, Wenhong, Zhao, Guoping, Liu, Xiaoxi, Diep, Hung T., Zhou, Yan

论文摘要

磁性天际含量可用作纳米尺度的非易失性信息载体,由于其特殊结构带有零拓扑电荷,因此没有显示Skyrmion Hall效应。在这里,我们报告了沮丧的磁单层中孤立的纳米级天际元素的静态和动态特性,在该磁性单层中,Skyrmionium通过竞争相互作用稳定。沮丧的Skyrmionium的大小约为$ 10 $ nm,可以通过调整垂直磁各向异性或磁场来进一步降低。发现由阻尼状的旋转轨道扭矩驱动的纳米级天气敏元素显示出具有偏爱的Bloch型螺旋性的方向运动。较小的驾驶电流或磁场会导致不稳定的Néel型Skyrmionium转化为亚稳态的Bloch型Skyrmionium。较大的驾驶电流可能导致Bloch型Skyrmionium的失真和崩溃。我们的结果对于理解沮丧的Skyrmionium物理学很有用,这也为基于拓扑自旋纹理设计的Spintronic设备设计提供了指南。

Magnetic skyrmionium can be used as a nanometer-scale non-volatile information carrier, which shows no skyrmion Hall effect due to its special structure carrying zero topological charge. Here, we report the static and dynamic properties of an isolated nanoscale skyrmionium in a frustrated magnetic monolayer, where the skyrmionium is stabilized by competing interactions. The frustrated skyrmionium has a size of about $10$ nm, which can be further reduced by tuning perpendicular magnetic anisotropy or magnetic field. It is found that the nanoscale skyrmionium driven by the damping-like spin-orbit torque shows directional motion with a favored Bloch-type helicity. A small driving current or magnetic field can lead to the transformation of an unstable Néel-type skyrmionium to a metastable Bloch-type skyrmionium. A large driving current may result in the distortion and collapse of the Bloch-type skyrmionium. Our results are useful for the understanding of frustrated skyrmionium physics, which also provide guidelines for the design of spintronic devices based on topological spin textures.

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