Zhao Le, Wang Zidong, Zhang Xichao, Liang Xue, Xia Jing, Wu Keyu, Zhou Heng-An, Dong Yiqing, Yu Guoqiang, Wang Kang L, Liu Xiaoxi, Zhou Yan, Jiang Wanjun
State Key Laboratory of Low-Dimensional Quantum Physics and Department of Physics, Tsinghua University, Beijing 100084, China.
Frontier Science Center for Quantum Information, Tsinghua University, Beijing 100084, China.
Phys Rev Lett. 2020 Jul 10;125(2):027206. doi: 10.1103/PhysRevLett.125.027206.
Noninteracting particles exhibiting Brownian motion have been observed in many occasions of sciences, such as molecules suspended in liquids, optically trapped microbeads, and spin textures in magnetic materials. In particular, a detailed examination of Brownian motion of spin textures is important for designing thermally stable spintronic devices, which motivates the present study. In this Letter, through using temporally and spatially resolved polar magneto-optic Kerr effect microscopy, we have experimentally observed the thermal fluctuation-induced random walk of a single isolated Néel-type magnetic skyrmion in an interfacially asymmetric Ta/CoFeB/TaO_{x} multilayer. An intriguing topology-dependent Brownian gyromotion behavior of skyrmions has been identified. The onset of Brownian gyromotion of a single skyrmion induced by thermal effects, including a nonlinear temperature-dependent diffusion coefficient and topology-dependent gyromotion are further formulated based on the stochastic Thiele equation. The experimental and numerical demonstration of topology-dependent Brownian gyromotion of skyrmions can be useful for understanding the nonequilibrium magnetization dynamics and implementing spintronic devices.
在许多科学领域都观察到了呈现布朗运动的非相互作用粒子,比如悬浮在液体中的分子、光学捕获的微珠以及磁性材料中的自旋纹理。特别地,详细研究自旋纹理的布朗运动对于设计热稳定的自旋电子器件至关重要,这推动了本研究。在本信函中,通过使用时间和空间分辨的极化磁光克尔效应显微镜,我们在界面不对称的Ta/CoFeB/TaOₓ多层膜中实验观察到了单个孤立的尼尔型磁斯格明子因热涨落引起的随机游走。已识别出斯格明子一种有趣的依赖拓扑结构的布朗回转运动行为。基于随机蒂勒方程,进一步阐述了由热效应引起的单个斯格明子布朗回转运动的起始,包括非线性温度依赖扩散系数和拓扑依赖回转运动。斯格明子依赖拓扑结构的布朗回转运动的实验和数值证明对于理解非平衡磁化动力学以及实现自旋电子器件可能是有用的。