DocumentCode :
845905
Title :
Hysteresis in soft ferromagnetic films: experimental observations and micromagnetic analysis
Author :
Schaefer, Rudolf ; DeSimone, Antonio
Author_Institution :
IFW-Dresden, Dresden, Germany
Volume :
38
Issue :
5
fYear :
2002
fDate :
9/1/2002 12:00:00 AM
Firstpage :
2391
Lastpage :
2393
Abstract :
The domain pattern evolution in magnetic fields along the diagonal of a square Permalloy film element (edge length 57 μm, thickness 207 nm) is studied theoretically and by Kerr-microscopic observation. Equilibrium configurations and magnetization curves are computed using a reduced two-dimensional model, based on minimization of the micromagnetic free-energy. Two main hysteretic events are found. The first is associated with domain walls reaching the sample edge, the second one with the expulsion of vortices from the interior of the sample. Only the second event leads to a remanent state that is different from the initial ac-demagnetized state. Our analysis shows that the first event corresponds to the nucleation of two regions of field penetration within the sample, while the second event is related to the merging of such regions causing a change of topology of the nonpenetrated part in the center region of the sample.
Keywords :
Kerr magneto-optical effect; Permalloy; demagnetisation; ferromagnetic materials; magnetic domain walls; magnetic hysteresis; magnetic thin films; soft magnetic materials; FeNi; Kerr-microscopic observation; demagnetizing field; domain pattern evolution; domain walls; equilibrium configurations; field penetration regions nucleation; hysteretic events; in-plane applied magnetic fields; magnetic domain response; magnetization curves; micromagnetic free-energy; reduced two-dimensional model; remanent state; soft ferromagnetic films; square Permalloy film element; variational formulation; vortices expulsion; Demagnetization; Magnetic analysis; Magnetic domains; Magnetic fields; Magnetic films; Magnetic hysteresis; Magnetization; Merging; Micromagnetics; Pattern analysis;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2002.803592
Filename :
1042198
Link To Document :
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