论文标题
在压缩下,天空准粒子的结构过渡
Structural transition of skyrmion quasiparticles under compression
论文作者
论文摘要
外部驱动器与颗粒间相互作用之间的竞争对于密闭几何形状中拓扑清理的静态和动态特性很重要。在这里,我们研究了在电流诱导的压缩下,在狭窄的空间中稳定天空并形成天空固体的动力学。我们发现,纳米级天空的晶格结构过渡可以由压缩引起,这取决于初始晶格构型和压缩水平。 Skyrmion固体中具有强烈的Skyrmion-Skyrmion排斥力的压缩效应可能会产生波前,显示出天空密度的突然变化,这可能会根据压缩水平在Skyrmion Solid中传播。此外,只要保持在驱动区域内,压缩天空固体表面上的一系列天际序列就可以显示出快速,稳定的运动。由于破坏性的Skyrmion-Skyrmion碰撞,一些天际可能会在压缩期间倒塌,这主要发生在驾驶和压缩区域之间的天空注射边界周围的区域。我们的结果对于理解携带非平凡拓扑的准粒子的压缩物理学很有用。
The competition between external drives and interparticle interactions are important for the static and dynamic properties of topological quasiparticles in confined geometries. Here, we study the dynamics of particlelike skyrmions under a current-induced compression, where skyrmions are stabilized in a confined space and form a skyrmion solid. We find that a lattice structural transition of nanoscale skyrmions could be induced by the compression, which depends on the initial lattice configuration and the compression level. The compression effect in the skyrmion solid with strong skyrmion-skyrmion repulsion could produce a wave front showing an abrupt change of the skyrmion density, which may propagate through the skyrmion solid depending on the compression level. Besides, a chain of skyrmions on the surface of the compressed skyrmion solid could show a fast and stable motion along the surface as long as it remains within the driving region. Some skyrmions may collapse during the compression due to the destructive skyrmion-skyrmion collision, which mainly happens in the area around the skyrmion injection boundary between the driving and compressive regions. Our results are useful for understanding the compression physics of quasiparticles carrying nontrivial topology.