论文标题
拓扑天空字符串的分叉
Bifurcation of a Topological Skyrmion String
论文作者
论文摘要
在许多物理学分支中,对三维(3D)拓扑对象的操纵既具有根本的兴趣又具有实际重要性。在这里,我们通过自旋动力学模拟显示,在分层沮丧的系统中,3D Skyrmion弦的分叉可能由阻尼状的旋转型轨道扭矩引起。当天空字符串带来$ q = 2 $的最小拓扑充电时,会发生天空字符串的分叉。我们证明,可以通过应用不同的电流注射几何形状来实现三种类型的分叉,从而导致从I形天空字符串转变为Y-,X-和O形的分叉。此外,分叉的Skyrmion弦的不同分支可以自发地合并到一个孤立的Skyrmion弦中。分叉的机制应与任何skyrmion字符串通用,并在分层沮丧的系统中具有$ q \ geq 2 $,并且可以提供一种通用方法来操纵3D字符串式拓扑对象,以用于自旋函数。
Manipulation of three-dimensional (3D) topological objects is of both fundamental interest and practical importance in many branches of physics. Here, we show by spin dynamics simulations that the bifurcation of a 3D skyrmion string in a layered frustrated system could be induced by the dampinglike spin-orbit torque. The bifurcation of a skyrmion string happens when the skyrmion string carries a minimal topological charge of $Q=2$. We demonstrate that three types of bifurcations could be realized by applying different current injection geometries, which lead to the transformation from I-shaped skyrmion strings to Y-, X-, and O-shaped ones. Besides, different branches of a bifurcated skyrmion string may merge into an isolated skyrmion string spontaneously. The mechanism of bifurcation should be universal to any skyrmion strings with $Q\geq 2$ in the layered frustrated system and could offer a general approach to manipulate 3D stringlike topological objects for spintronic functions.