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Non-equilibrium heating path for the laser-induced nucleation of metastable skyrmion lattices

机译:Non-equilibrium heating path for the laser-induced nucleation of metastable skyrmion lattices

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摘要

Understanding formation of metastable phases by rapid energy pumping and quenching has been intriguing scientists for a long time. This issue is crucial for technologically relevant systems such as magnetic skyrmions which are frequently metastable at zero field. Using Atomistic Spin Dynamics simulations, we show the possibility of creating metastable skyrmion lattices in cobalt-based trilayers by femtosecond laser heating. Similar to the formation of supercooled ice droplets in the gas phase, high temperature ultrafast excitation creates magnon drops and their fast relaxation leads to acquisition and quenching of the skyrmion topological protection. The interplay between different processes corresponds to a specific excitation window which can be additionally controlled by external fields. The results are contrasted with longer-scale heating leading to a phase transition to the stable states. Our results provide insight into the dynamics of the highly non-equilibrium pathway for spin excitations and pave additional routes for skyrmion-based information technologies.
机译:了解亚稳相的形成快速的能量注入和淬火有趣的科学家很长一段时间。相关技术系统是至关重要的如磁skyrmions频繁亚稳在零场。动力学模拟,我们展示的可能性创建亚稳skyrmion晶格钴基trilayers飞秒激光供暖。冰液滴在气相,高温超速激发产生磁振子和下降他们快速放松导致收购和淬火的skyrmion拓扑保护。不同的进程之间的相互作用对应于一个特定的激发窗口另外可以由外部控制字段。longer-scale加热阶段过渡到稳定状态。提供洞察高度的动态自旋激和非平衡途径为额外的skyrmion-based路线信息技术。

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