Skyrmion lattice domain formation in a non-flat energy landscape

dc.contributor.authorGruber, Raphael
dc.contributor.authorFröhlich, Simon M.
dc.contributor.authorRothörl, Jan
dc.contributor.authorBrems, Maarten A.
dc.contributor.authorSparmann, Tobias
dc.contributor.authorKammerbauer, Fabian
dc.contributor.authorSyskaki, Maria-Andromachi
dc.contributor.authorJefremovas, Elizabeth M.
dc.contributor.authorKrishnia, Sachin
dc.contributor.authorSudbø, Asle
dc.contributor.authorVirnau, Peter
dc.contributor.authorKläui, Mathias
dc.date.accessioned2026-03-13T08:17:25Z
dc.date.issued2025
dc.description.abstractMagnetic skyrmions are chiral spin structures with non-trivial topology that comprise two-dimensional quasi-particles and are promising information carriers for data storage and processing devices. Skyrmion lattices in magnetic thin films exhibit Kosterlitz-Thouless-Halperin-Nelson-Young (KTHNY) phase transitions and have garnered significant interest for studying emergent 2D phase behavior. In experimental skyrmion lattices, the main factor limiting the quasi-long-range order in thin films has been the non-flat energy landscape – often referred to as pinning effects. We demonstrate direct control of the skyrmion lattice order by effectively tuning the energy landscape employing magnetic field oscillations. By quantifying lattice order and dynamics, we explore how domain boundaries form and evolve due to pinning effects in Kerr microscopy experiments and in Brownian dynamics simulations, offering a pathway to control and study emergent skyrmion lattice properties and 2D phase behavior.en
dc.identifier.doihttps://doi.org/10.25358/openscience-14638
dc.identifier.urihttps://openscience.ub.uni-mainz.de/handle/20.500.12030/14659
dc.language.isoeng
dc.rightsCC-BY-4.0
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.subject.ddc530 Physikde
dc.subject.ddc530 Physicsen
dc.titleSkyrmion lattice domain formation in a non-flat energy landscapeen
dc.typeZeitschriftenaufsatz
jgu.apc.netprice3075,35
jgu.apc.price3290,62
jgu.apc.taxrate7
jgu.apc.transformationcontractSpringer (DEAL)
jgu.dfg.year2025
jgu.identifier.uuid3e382a10-bd9e-475a-9f52-4db1cc5b5d9a
jgu.journal.titleCommunications Physics
jgu.journal.volume9
jgu.nationalcurrency.eur3075,35
jgu.organisation.departmentFB 08 Physik, Mathematik u. Informatik
jgu.organisation.nameJohannes Gutenberg-Universität Mainz
jgu.organisation.number7940
jgu.organisation.placeMainz
jgu.organisation.rorhttps://ror.org/023b0x485
jgu.pages.alternative29
jgu.publisher.doi10.1038/s42005-025-02462-x
jgu.publisher.eissn2399-3650
jgu.publisher.nameSpringer
jgu.publisher.placeLondon
jgu.publisher.year2025
jgu.rights.accessrightsopenAccess
jgu.subject.ddccode530
jgu.subject.dfgNaturwissenschaften
jgu.type.dinitypeArticleen_GB
jgu.type.resourceText
jgu.type.versionPublished version

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