Ohara Kentaro, Zhang Xichao, Chen Yinling, Kato Satoshi, Xia Jing, Ezawa Motohiko, Tretiakov Oleg A, Hou Zhipeng, Zhou Yan, Zhao Guoping, Yang Jinbo, Liu Xiaoxi
Department of Electrical and Computer Engineering, Shinshu University, 4-17-1 Wakasato, Nagano380-8553, Japan.
Department of Applied Physics, The University of Tokyo, 7-3-1 Hongo, Tokyo113-8656, Japan.
Nano Lett. 2022 Nov 9;22(21):8559-8566. doi: 10.1021/acs.nanolett.2c03106. Epub 2022 Oct 19.
Skyrmions and bimerons are versatile topological spin textures that can be used as information bits for both classical and quantum computing. The transformation between isolated skyrmions and bimerons is an essential operation for computing architecture based on multiple different topological bits. Here we report the creation of isolated skyrmions and their subsequent transformation to bimerons by harnessing the electric current-induced Oersted field and temperature-induced perpendicular magnetic anisotropy variation. The transformation between skyrmions and bimerons is reversible, which is controlled by the current amplitude and scanning direction. Both skyrmions and bimerons can be created in the same system through the skyrmion-bimeron transformation and magnetization switching. Deformed skyrmion bubbles and chiral labyrinth domains are found as nontrivial intermediate transition states. Our results may provide a unique way for building advanced information-processing devices using different types of topological spin textures in the same system.
斯格明子和双米子是通用的拓扑自旋纹理,可作为经典和量子计算的信息比特。孤立斯格明子和双米子之间的转换是基于多种不同拓扑比特的计算架构的基本操作。在此,我们报告了通过利用电流感应的奥斯特场和温度感应的垂直磁各向异性变化来创建孤立斯格明子及其随后向双米子的转换。斯格明子和双米子之间的转换是可逆的,由电流幅度和扫描方向控制。通过斯格明子 - 双米子转换和磁化切换,斯格明子和双米子都可以在同一系统中创建。发现变形的斯格明子泡和手性迷宫畴是非平凡的中间过渡态。我们的结果可能为在同一系统中使用不同类型的拓扑自旋纹理构建先进信息处理设备提供独特方法。