Augustin Mathias, Jenkins Sarah, Evans Richard F L, Novoselov Kostya S, Santos Elton J G
School of Mathematics and Physics, Queen's University, Belfast, BT7 1NN, UK.
Department of Physics, The University of York, York, YO10 5DD, UK.
Nat Commun. 2021 Jan 8;12(1):185. doi: 10.1038/s41467-020-20497-2.
Merons are nontrivial topological spin textures highly relevant for many phenomena in solid state physics. Despite their importance, direct observation of such vortex quasiparticles is scarce and has been limited to a few complex materials. Here, we show the emergence of merons and antimerons in recently discovered two-dimensional (2D) CrCl at zero magnetic field. We show their entire evolution from pair creation, their diffusion over metastable domain walls, and collision leading to large magnetic monodomains. Both quasiparticles are stabilized spontaneously during cooling at regions where in-plane magnetic frustration takes place. Their dynamics is determined by the interplay between the strong in-plane dipolar interactions and the weak out-of-plane magnetic anisotropy stabilising a vortex core within a radius of 8-10 nm. Our results push the boundary to what is currently known about non-trivial spin structures in 2D magnets and open exciting opportunities to control magnetic domains via topological quasiparticles.
梅隆子是与固态物理中的许多现象高度相关的非平凡拓扑自旋纹理。尽管它们很重要,但对这种涡旋准粒子的直接观测却很少,并且仅限于少数复杂材料。在这里,我们展示了在最近发现的二维(2D)CrCl中,在零磁场下梅隆子和反梅隆子的出现。我们展示了它们从对产生开始的整个演化过程,它们在亚稳态畴壁上的扩散以及导致大磁单畴的碰撞。这两种准粒子在发生面内磁阻挫的区域冷却过程中自发地稳定下来。它们的动力学由强面内偶极相互作用和稳定半径为8 - 10纳米的涡旋核心的弱面外磁各向异性之间的相互作用决定。我们的结果拓展了目前对二维磁体中非平凡自旋结构的认知边界,并为通过拓扑准粒子控制磁畴开辟了令人兴奋的机会。