空中骑兵
物理
霍尔效应
拓扑量子数
凝聚态物理
洛伦兹力
横截面
自旋霍尔效应
磁场
热霍尔效应
拓扑绝缘体
拓扑(电路)
电子
量子力学
自旋极化
工程类
组合数学
结构工程
数学
作者
Wanjun Jiang,Xichao Zhang,Guoqiang Yu,Wei Zhang,Xiao Wang,M. Benjamin Jungfleisch,John E. Pearson,Xuemei Cheng,Olle Heinonen,Kang L. Wang,Yan Zhou,A. Hoffmann,S. G. E. te Velthuis
出处
期刊:Nature Physics
[Springer Nature]
日期:2016-09-19
卷期号:13 (2): 162-169
被引量:991
摘要
The well-known Hall effect describes the transverse deflection of charged particles (electrons or holes) in an electric-current carrying conductor under the influence of perpendicular magnetic fields, as a result of the Lorentz force. Similarly, it is intriguing to examine if quasi-particles without an electric charge, but with a topological charge, show related transverse motion. Chiral magnetic skyrmions with a well-defined spin topology resulting in a unit topological charge serve as good candidates to test this hypothesis. In spite of the recent progress made on investigating magnetic skyrmions, direct observation of the skyrmion Hall effect in real space has, remained elusive. Here, by using a current-induced spin Hall spin torque, we experimentally observe the skyrmion Hall effect by driving skyrmions from creep motion into the steady flow motion regime. We observe a Hall angle for the magnetic skyrmion motion as large as 15 degree for current densities smaller than 10 MA/cm^(2) at room temperature. The experimental observation of transverse transport of skyrmions due to topological charge may potentially create many exciting opportunities for the emerging field of skyrmionics, including novel applications such as topological selection.
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