Title :
The spatial structure of media noise
Author :
Taratorin, Alexander M. ; Xiao, Min ; Klaassen, Klaas B.
Author_Institution :
San Jose Res. Center, CA, USA
Abstract :
The spatial structure of dc and transition noise in perpendicular and longitudinal recording media is studied. Experimental techniques for local dc noise and transition noise analysis are described. It is demonstrated that the dc and transition noise is deterministic and repeatable at given medium location. The transition noise is correlated with the dc noise; the local fluctuations of the dc saturated magnetization are becoming enhanced when a transition is written at this location. This enhanced local dc noise is explained by local medium demagnetization which is strongest at the transition, it determines the transition noise magnitude.
Keywords :
demagnetisation; magnetic recording noise; magnetisation; perpendicular magnetic recording; dc noise; dc saturated magnetization; longitudinal recording media; media jitter; media noise; medium demagnetization; perpendicular recording media; spatial structure; transition noise; Demagnetization; Fluctuations; Jitter; Magnetic analysis; Magnetic anisotropy; Magnetic heads; Magnetic noise; Perpendicular magnetic anisotropy; Perpendicular magnetic recording; Saturation magnetization; DC noise; magnetic recording; media jitter; transition noise;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2004.839066