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Laser-induced metastable (anti-)skyrmion states with higher-order topological charge

Published 11 Sep 2026 in cond-mat.mes-hall and cond-mat.mtrl-sci | (2609.13112v1)

Abstract: Ultrafast creation and manipulation of topologically non-trivial spin objects promises significant potential for spintronic applications. Here, we demonstrate laser-induced nucleation of skyrmions and antiskyrmions with topological charge up to ∣Q∣=3|Q|=3 from the saturated magnetization state of a Co/Ni-multilayer which does not intrinsically host a skyrmionic ground state. The resulting configuration of spin objects thus constitutes a metastable, thermodynamically hidden magnetic state. We control the number and type of spin objects by the excitation fluence and the external out-of-plane magnetic field.

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