Surface pinning and triggered unwinding of skyrmions in a cubic chiral magnet

Peter Milde, Erik Neuber, Andreas Bauer, Christian Pfleiderer, Lukas M. Eng

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

In the cubic chiral magnet Fe1-xCoxSi a metastable state comprising topologically nontrivial spin whirls, so-called skyrmions, may be preserved down to low temperatures by means of field cooling the sample. This metastable skyrmion state is energetically separated from the topologically trivial ground state by a considerable potential barrier, a phenomenon also referred to as topological protection. Using magnetic force microscopy on the surface of a bulk crystal, we show that certain positions are preferentially and reproducibly decorated with metastable skyrmions, indicating that surface pinning plays a crucial role. Increasing the magnetic field allows an increasing number of skyrmions to overcome the potential barrier and hence to transform into the ground state. Most notably, we find that the unwinding of individual skyrmions may be triggered by the magnetic tip sample interaction itself, however, only when its magnetization is aligned parallel to the external field. This implies that the stray field of the tip is key for locally overcoming the topological protection. Both the control of the position of topologically nontrivial states and their creation and annihilation on demand pose important challenges in the context of potential skyrmionic applications.

Original languageEnglish
Article number024408
JournalPhysical Review B
Volume100
Issue number2
DOIs
StatePublished - 8 Jul 2019

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