DocumentCode
764216
Title
Effect of van der Waals Force on Air-Bearing Flying Characteristics at Ultra-Low Fly Height
Author
Peng, Wei ; Crone, Robert M. ; Jones, Paul M. ; Hsia, Yiao-Tee
Author_Institution
Seagate Technol., Pittsburgh, PA
Volume
42
Issue
10
fYear
2006
Firstpage
2483
Lastpage
2485
Abstract
In order to increase recording density for magnetic recording systems, the fly height of slider, as part of head-media magnetic spacing, has to remain ultra-low through proper air-bearing designs. At these ultra-low fly heights, the presence of interfacial forces, such as van der Waals (vdW) force, can significantly affect air-bearing flying characteristics. In this paper, one air-bearing design has been studied at ultra-low fly heights with a proprietary air-bearing simulation code, where a Lifshitz-theory-based fully retarded vdW force model was applied on the multilayered head-disk interface (HDI), in contrast to most studies with a "nonretarded" single-layer approach. This results in a lower static fly height and a higher touch down/take-off velocity, which clearly demonstrates the necessity of performing the fully retarded calculation on a realistic layered model of the HDI for accurate vdW force predictions. A further breakdown of the vdW force components shows a dominant pitch moment contribution. This is attributed to a nonuniform Hamaker function distribution, which is highly dependent on air-bearing designs
Keywords
magnetic disc storage; magnetic heads; magnetic multilayers; magnetic recording; van der Waals forces; Lifshitz theory; air-bearing designs; air-bearing simulation code; air-bearing slider; fly height; head-media magnetic spacing; interfacial forces; magnetic recording systems; multilayered head-disk interface; nonuniform Hamaker function distribution; recording density; single-layer approach; van der Waals force; Dielectric substrates; Electric breakdown; Magnetic heads; Magnetic multilayers; Magnetic recording; Magnetic separation; Nonhomogeneous media; Predictive models; Process design; Temperature; Air-bearing slider; head-disk interface (HDI); van der Waals (vdW);
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2006.878615
Filename
1704339
Link To Document