Magnetic domains in thin ferromagnetic films with strong perpendicular anisotropy

We investigate the scaling of the ground state energy and optimal domain patterns in thin ferromagnetic films with strong uniaxial anisotropy and the easy axis perpendicular to the film plane. Starting from the full three-dimensional micromagnetic model, we identify the critical scaling for which th...

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Bibliographic Details
Main Authors: Knüpfer, Hans (Author) , Muratov, Cyrill B. (Author) , Nolte, Florian (Author)
Format: Article (Journal)
Language:English
Published: [May 2019]
In: Archive for rational mechanics and analysis
Year: 2019, Volume: 232, Issue: 2, Pages: 727-761
ISSN:1432-0673
DOI:10.1007/s00205-018-1332-3
Online Access:Verlag, Volltext: https://doi.org/10.1007/s00205-018-1332-3
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Author Notes:Hans Knüpfer, Cyrill B. Muratov & Florian Nolte
Description
Summary:We investigate the scaling of the ground state energy and optimal domain patterns in thin ferromagnetic films with strong uniaxial anisotropy and the easy axis perpendicular to the film plane. Starting from the full three-dimensional micromagnetic model, we identify the critical scaling for which the transition from single domain to multidomain ground states such as bubble or maze patterns occurs as the film thickness goes to zero and the lateral extent goes to infinity. Furthermore, we analyze the asymptotic behavior of the energy in these two asymptotic regimes. In the single domain regime, the energy Γ-converges towards a much simpler two-dimensional and local model. In the multidomain regime, we derive the scaling of the minimal energy and deduce a scaling law for the typical domain size.
Item Description:Gesehen am 16.04.2019
Physical Description:Online Resource
ISSN:1432-0673
DOI:10.1007/s00205-018-1332-3