DocumentCode :
1519995
Title :
Numerical Investigation of Thermal Problems in Heat-Assisted Magnetic Recording System
Author :
Zhang, Q.D. ; Xu, B.X. ; Zhang, J. ; Liu, N.Y. ; Chin, G.L. ; Sundaravadivelu, K. ; Ong, E.H.
Author_Institution :
Data Storage Inst., Singapore, Singapore
Volume :
45
Issue :
11
fYear :
2009
Firstpage :
4962
Lastpage :
4965
Abstract :
This paper describes the numerical investigation of two thermal related problems in heat assisted magnetic recording: 1) the dependence of the recorded mark width on the laser power and 2) the temperature distribution of the lubricant layer and its variation with time and the change with and without the heat sink layer. It is found that the mark width increases with the increase of laser power, but the increase is not linear due to the Gaussian distribution of the laser intensity. It is also found that in certain power range, a smaller laser spot will generate a wider mark width at the same laser power. For lubricant cooling process, the temperature in lubricant layer decreases quickly after the laser is removed. Within 0.5 ns, the maximum temperature in lubricant layer drops 35.6degC when there is no heat sink layer applied under the recording media layer. With heat sink layer applied under the media layer, the temperature drop is even faster and decreases by 57.0degC in 0.5 ns. Hence, the heat sink layer is useful to quickly cool the lubricant layer to a thermally stable range.
Keywords :
laser beam applications; thermomagnetic recording; Gaussian distribution; heat sink layer; heat-assisted magnetic recording system; laser power dependence; lubricant cooling process; lubricant layer; recorded mark width; temperature distribution; thermal problems; Cooling; Gaussian distribution; Heat sinks; Heat-assisted magnetic recording; Laser transitions; Lubricants; Magnetic recording; Power generation; Power lasers; Temperature distribution; Heat-assisted magnetic recording (HAMR); heat transfer; lubricant; recorded mark; simulation; temperature distribution;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2009.2029408
Filename :
5297506
Link To Document :
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