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dc.contributor.advisor33
dc.contributor.authorCisternas, J.
dc.contributor.authorNavarro, M.
dc.contributor.authorDuarte, S.
dc.contributor.authorConcha, A.
dc.coverageDOI: 10.1063/5.0119916
dc.date2022
dc.date.accessioned05-01-2026 18:13
dc.date.available05-01-2026 18:13
dc.date.issued33
dc.description.abstractMacroscopic magnets can easily be manipulated and positioned so that interactions between themselves and with external fields induce interesting dynamics and equilibrium configurations. In this work, we use rotating magnets positioned in a line or at the vertices of a regular polygon. The rotation planes of the magnets can be modified at will. The rich structure of stable and unstable configurations is dictated by symmetry and the side of the polygon. We show that both symmetric solutions and their symmetry-breaking bifurcations can be explained with group theory. Our results suggest that the predicted magnetic textures should emerge at any length scale as long as the interaction is polar, and the system is endowed with the same symmetries.
dc.identifierhttps://investigadores.uandes.cl/en/publications/bd3cc7ee-8d7a-4553-87f8-6dae281db38e
dc.identifier.citation33
dc.identifier.uri33
dc.languageeng
dc.language.iso33
dc.publisher33
dc.relation33
dc.rightsinfo:eu-repo/semantics/restrictedAccess
dc.sourcevol.32 (2022) date: 2022-12-01 nr.12
dc.subject33
dc.title33
dc.titleEquilibrium and symmetries of altitudinal magnetic rotors on a circleeng
dc.title33spa
dc.title33und
dc.type33
dc.typeArticleeng
dc.typeArtículospa
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