空中骑兵
拓扑(电路)
赛道记忆
拓扑量子数
电压
物理
自旋(空气动力学)
栅极电压
凝聚态物理
计算机科学
量子力学
数学
操作系统
组合数学
半导体存储器
热力学
晶体管
计算机存储器
内存刷新
作者
Zhiyu Zhang,Min Xu,Guiqian Jiang,Jinyu Zhang,Dexiang Meng,Wenlong Chen,Yuliang Chen,Changjing Hu
摘要
Skyrmion bags are spin structures with arbitrary topological degrees. They are expected to be promising next-generation information carriers due to their inherent high topological degrees. Here, we report the dynamics of the topological transition process when a skyrmion bag passes through a voltage gate driven by spin current in a synthetic antiferromagnetic racetrack with voltage-controlled magnetic anisotropy. The topological degrees of skyrmion bags controlled by voltage gate and driving current density are investigated. It is found that the different topological degrees of skyrmion bags transformed in this process are related to the interaction between antiskyrmions inside skyrmion bags, and the energy of each inner antiskyrmion after topological transformation is on the order of $10^{{-}19}\;J$. Furthermore, we have realized the successive transition of a skyrmion bag from a high topological degree to a low topological degree on a racetrack with three voltage gates. This work is helpful for designing high-density racetrack memory and logical devices based on skyrmion bags.
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