DocumentCode
1157439
Title
Design Consideration and Practical Solution of High-Performance Perpendicular Magnetic Recording Media
Author
Tang, K. ; Bian, X. ; Choe, G. ; Takano, K. ; Mirzamaani, M. ; Wang, G. ; Zhang, J. ; Xiao, Q.F. ; Ikeda, Y. ; Risner-Jamtgaard, J. ; Xu, X.
Author_Institution
Hitachi Global Storage Technol., San Jose, CA
Volume
45
Issue
2
fYear
2009
Firstpage
786
Lastpage
792
Abstract
The core of the current granular perpendicular magnetic recording (PMR) media is the granular oxide magnetic layer (GOML). We observe that a fcc NiW seed layer, followed by a hcp Ru layer sputtered under low pressure (LP-Ru) and then by a hcp Ru layer sputtered under high pressure (HP-Ru) provides an excellent structural template for the granular oxide magnetic layer (GOML). Microstructure and magnetic properties of the GOML can be tailored through process conditions and alloy compositions to maximize the recording performance of the perpendicular magnetic recording media. Exchange coupled composite (ECC) media design provides significant improvement in overwrite (OW) and signal-to-noise ratio (S0 NR) for perpendicular magnetic recording media. Recording performance of the ECC media needs to be optimized with consideration of the magnetic properties and thicknesses of both the exchange control layer (ECL) and the cap magnetic layer (CML). At their respective optimum, the recording performance of the ECC media is mostly dependent upon the properties of the GOML and CML. This study indicates that a dual magnetic cap layer structure consisting of low-Ms and high-Ms sublayers can combine the benefits provided by the two types of cap magnetic materials.
Keywords
granular structure; magnetic cores; magnetic thin films; nickel alloys; perpendicular magnetic recording; ruthenium; sputtered coatings; tungsten alloys; CML; ECC; ECL; GOML; NiW-Ru; PMR; cap magnetic layer; exchange control layer; exchange coupled composite media design; granular oxide magnetic layer; granular perpendicular magnetic recording media; hcp layer; high pressure effects; magnetic core; magnetic properties; microstructure; signal-noise ratio; sputter deposition; Dual magnetic cap layer; exchange control layer; exchange coupled composite media; granular oxide magnetic layer; perpendicular magnetic recording media;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2008.2010479
Filename
4782198
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