DocumentCode
788661
Title
Kerr microscopy study on sputtered Fe stripes
Author
McCord, Jeffrey ; Schmitte, Till ; Schäfer, Rudolf ; Zabel, Hartmut ; Schultz, Ludwig
Author_Institution
Leibniz Inst. for Solid State & Mater. Res., Dresden, Germany
Volume
39
Issue
5
fYear
2003
Firstpage
2687
Lastpage
2689
Abstract
Sputtered polycrystalline iron gratings with a varying stripe width between 0.5 and 3.7 μm at a constant periodicity of 5 μm were studied by Kerr microscopy. The magnetic anisotropy direction is aligned transverse to the stripe length axis. The observed domain processes are directly compared with hysteresis curve measurements. Domain nucleation and the resulting domain structure depend on the external magnetic field direction. Complicated multidomain states are observed down to a stripe width of 1.7 μm. The most narrowly spaced stripes display a simple domain configuration with the average magnetization vector perpendicular to the stripes, along the full film anisotropy axis, indicating dipolar coupling between the elements. With decreasing stripe width and increasing stripe distance, a change to a Landau-Lifshitz-like domain pattern is found. For very narrow stripes, it transforms into a ripple modulated domain structure. Altogether, a continuous transition from full-film-like to single strip-like magnetization behavior with increasing stripe spacing is found. The results are explained by the existing uniaxial magnetic anisotropy together with the shape anisotropy increasing with reduced stripe width. The strong influence of coercivity on the magnetization patterns is shown.
Keywords
Kerr magneto-optical effect; ferromagnetic materials; iron; magnetic anisotropy; magnetic domains; magnetic thin films; sputtered coatings; 0.5 to 3.7 micron; 1.7 micron; 5 micron; Fe; Kerr microscopy; Landau-Lifshitz-like domain pattern; average magnetization vector; coercivity; constant periodicity; continuous transition; decreasing stripe width; dipolar coupling; domain nucleation; full film anisotropy axis; hysteresis curve measurements; increasing stripe distance; magnetic anisotropy direction; magnetization patterns; ripple modulated domain structure; shape; sputtered Fe stripes; sputtered polycrystalline iron gratings; stripe length axis; uniaxial magnetic anisotropy; Anisotropic magnetoresistance; Displays; Gratings; Iron; Magnetic anisotropy; Magnetic field measurement; Magnetic films; Magnetic hysteresis; Magnetization; Microscopy;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2003.815559
Filename
1233185
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