DocumentCode
1155530
Title
Magnetization process along a direction inclined to the anisotropy axis
Author
Nowak, J. ; Jurusik, J.
Author_Institution
Dept. of Solid State Phys., Acad. of Sci., Zabrze, Poland
Volume
30
Issue
5
fYear
1994
fDate
9/1/1994 12:00:00 AM
Firstpage
2824
Lastpage
2828
Abstract
The magnetization reversal process in thin Nd0.1Co0.9 films has been observed using a transmission electron microscope equipped with a special attachment to generate a homogeneous magnetic field in the film plane. When the direction of external field is inclined to the uniaxial anisotropy axis the domain structure, low angle Neel walls and rotations of local magnetization direction are asymmetric. An inhomogeneous distribution of the local magnetization direction inside a ferromagnetic film is a source of the stray field. An analysis of domain configuration indicates that the asymmetric low angle Neel walls are charged and produce strong stray fields perpendicular to the domain walls. In the new phase domains the stray field is positive, while in the old phase this field is negative. The local stray fields modify the incoherent rotations as well as the S-W instability and usually oppose the process of incoherent rotation. The local stray field has been calculated in terms of modified Stoner-Wohlfarth model
Keywords
cobalt alloys; ferromagnetic properties of substances; magnetic anisotropy; magnetic domain walls; magnetic thin films; magnetisation reversal; neodymium alloys; transmission electron microscope examination of materials; Nd0.1Co0.9; Nd0.1Co0.9 films; anisotropy axis; domain structure; ferromagnetic film; homogeneous magnetic field; incoherent rotations; local magnetization direction; low angle Neel walls; magnetization process; magnetization reversal; modified Stoner-Wohlfarth model; stray field; transmission electron microscope; uniaxial anisotropy axis; Anisotropic magnetoresistance; Magnetic analysis; Magnetic domain walls; Magnetic fields; Magnetic films; Magnetic force microscopy; Magnetization processes; Magnetization reversal; Neodymium; Transmission electron microscopy;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/20.312526
Filename
312526
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