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Structural transitions of skyrmion lattices in synthetic antiferromagnets

Authors :
van Walsem, Etienne
Duine, Rembert A.
Lucassen, J.
Lavrijsen, R.
Swagten, H. J.M.
van Walsem, Etienne
Duine, Rembert A.
Lucassen, J.
Lavrijsen, R.
Swagten, H. J.M.
Source :
Physical Review B vol.100 (2019) date: 2019-08-05 nr.6 [ISSN 2469-9950]
Publication Year :
2019

Abstract

Thin magnetic films with Dzyaloshinskii-Moriya interactions are known to host skyrmion crystals, which typically have a hexagonal lattice structure. We investigate skyrmion-lattice configurations in synthetic antiferromagnets, i.e., a bilayer of thin magnetic films that is coupled antiferromagnetically. By means of Monte Carlo simulations, we find that by tuning the interlayer coupling the skyrmion lattice structure can be tuned from square to hexagonal. We give a simple interpretation for the existence of this transition based on the fact that for synthetic antiferromagnetic coupling the skyrmions in different layers repel each other and form each others' dual lattice. Our findings may be useful to experimentally switch between two lattice configurations to, for example, modify spin-wave propagation.

Details

Database :
OAIster
Journal :
Physical Review B vol.100 (2019) date: 2019-08-05 nr.6 [ISSN 2469-9950]
Notes :
van Walsem, Etienne
Publication Type :
Electronic Resource
Accession number :
edsoai.on1122938544
Document Type :
Electronic Resource