论文标题

非平衡拓扑波动状态的强大场景

Robust scenario for the generation of non-equilibrium topological fluctuation states

论文作者

Gerlinger, Kathinka, Liefferink, Rein, Schneider, Michael, Kern, Lisa-Marie, Klose, Christopher, Metternich, Daniel, Engel, Dieter, Capotondi, Flavio, De Angelis, Dario, Pancaldi, Matteo, Pedersoli, Emanuele, Büttner, Felix, Eisebitt, Stefan, Mentink, Johan H., Pfau, Bastian

论文摘要

最近发现的拓扑波动态为凝结物质系统中拓扑的超快出现提供了一个引人入胜的新观点。但是,关于这种状态的物理和拓扑波动的起源知之甚少。使用时间分辨的小角度X射线散射,我们观察到激光激发后出现拓扑波动态,即使最终状态不容纳稳定的天空。模拟支持了这些发现,并表明波动源于自发成核与天空衰减之间的竞争,这与潜在的屏障上的Arrhenius样激活一致。当系统的有效温度比天空的衰减时间快时,稳定的天空可以冻结这种波动。我们的结果揭示了生成拓扑波动状态的强大场景,有可能在各种磁性系统中进行研究。

The recently discovered topological fluctuation state provides a fascinating new perspective on the ultrafast emergence of topology in condensed matter systems. However, rather little is known about the physics of this state and the origin of the topological fluctuations. Using time-resolved small-angle x-ray scattering, we observe that topological fluctuation states appear after laser excitation even if the final state does not host stable skyrmions. Simulations support these findings and reveal that the fluctuations originate from the competition between spontaneous nucleation and decay of skyrmions, consistent with Arrhenius-like activation over a potential barrier. Stable skyrmions can freeze out of such fluctuations when the effective temperature of the system relaxes faster than the decay time of the skyrmions. Our results reveal a robust scenario for the generation of topological fluctuation states, potentially enabling their study in a wide variety of magnetic systems.

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