DocumentCode :
1060861
Title :
Angular dependence of the remanence coercivity in magnetic recording media
Author :
Speliotis, D.E. ; Judge, J.P.
Author_Institution :
Digital Meas. Syst. Inc., Burlington, MA, USA
Volume :
27
Issue :
6
fYear :
1991
fDate :
11/1/1991 12:00:00 AM
Firstpage :
4984
Lastpage :
4986
Abstract :
The angular dependence of remanence coercivity was measured for various advanced particulate (Co-gamma, CrO2, metal particle, Ba-ferrite) and thin-film (CoCrTa, CoNiPt, CoCr) media including longitudinal, isotropic, and perpendicularly oriented types. The results were corrected by vector magnetometry, and by a simple method based on a conventional single-axis VSM and utilizing only the component Mx of the magnetization along the field to correct for the demagnetizing fields. To simplify the measurements, the authors neglected the component of the demagnetizing field perpendicular to the applied field axis, which can introduce significant errors at angles away from 0° and 90°. It is found that the Mx model provides results in agreement with the vector measurements at 90° for all the media. For other angles, however, the Mx model undercorrects for longitudinally oriented media and overcorrects for perpendicularly oriented media. The implications for recording demagnetization and side-track writing are discussed
Keywords :
coercive force; demagnetisation; magnetic properties of fine particles; magnetic recording; magnetisation; remanence; Ba ferrite floppy disk; BaFe12O19; Co-Fe2O3; CoCr; CoCrTa; CoNiPt; CrO2; advanced particulate media; angular dependence; demagnetizing fields; longitudinally oriented media; magnetic recording media; magnetization; metal particle video tape; perpendicularly oriented media; recording demagnetization; remanence coercivity; side-track writing; single-axis VSM; thin film media; vector magnetometry; Coercive force; Demagnetization; Disk recording; Magnetic field measurement; Magnetization; Particle measurements; Perpendicular magnetic recording; Remanence; Transistors; Writing;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.278715
Filename :
278715
Link To Document :
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