RIKEN Center for Emergent Matter Science (CEMS), Wako, 351-0198, Japan.
Department of Applied Physics, The University of Tokyo, Tokyo, 113-8656, Japan.
Nat Commun. 2017 Nov 6;8(1):1332. doi: 10.1038/s41467-017-01353-2.
In the MnSi bulk chiral magnet, magnetic skyrmion strings of 17 nm in diameter appear in the form of a lattice, penetrating the sample thickness, 10-1000 μm. Although such a bundle of skyrmion strings may exhibit complex soft-matter-like dynamics when starting to move under the influence of a random pinning potential, the details remain highly elusive. Here, we show that a metastable skyrmion-string lattice is subject to topological unwinding under the application of pulsed currents of 3-5 × 10 A m rather than being transported, as evidenced by measurements of the topological Hall effect. The critical current density above which the topological unwinding occurs is larger for a shorter pulse width, reminiscent of the viscoelastic characteristics accompanying the pinning-creep transition observed in domain-wall motion. Numerical simulations reveal that current-induced depinning of already segmented skyrmion strings initiates the topological unwinding. Thus, the skyrmion-string length is an element to consider when studying current-induced motion.
在 MnSi 体 chiral 磁体中,直径为 17nm 的磁 skyrmion 串以晶格的形式出现,贯穿样品厚度为 10-1000μm。尽管在随机钉扎势的影响下开始移动时,这样的 skyrmion 串束可能表现出复杂的类似软物质的动力学,但细节仍然难以捉摸。在这里,我们表明,亚稳态 skyrmion 串晶格在施加 3-5×10 A m 的脉冲电流下会发生拓扑展开,而不是像拓扑霍尔效应测量所证明的那样被传输。拓扑展开发生的临界电流密度对于较短的脉冲宽度更大,这让人联想到在畴壁运动中观察到的与钉扎蠕变转变相关的粘弹性特征。数值模拟表明,已经分段的 skyrmion 串的电流诱导去钉扎会引发拓扑展开。因此,在研究电流诱导运动时,skyrmion 串的长度是一个需要考虑的因素。