DocumentCode :
1099942
Title :
Structural, magnetic and recording properties of Co-Cr layers for perpendicular recording using Ge nucleation layers
Author :
Schruwen, C.P.G. ; Bernards, J.P.C. ; de Bie, R.W. ; Engelen, G. J P ; Stel, H.H. ; Zierren, V. ; Liutjens, S.B.
Author_Institution :
Philips Res. Labs., Eindhoven, Netherlands
Volume :
24
Issue :
2
fYear :
1988
fDate :
3/1/1988 12:00:00 AM
Firstpage :
1901
Lastpage :
1903
Abstract :
The influence of amorphous Ge underlayers on the structural, magnetic, and recording properties of Co-Cr recording media was studied. The media were prepared by RF sputtering on PET (polyethylene terephthalate) substrates just above room temperature. The Ge underlayer is observed to promote the perpendicular anisotropy of the Co-Cr, provided the Ge-layer thickness exceeds a critical value of about 200 nm to effectively seal the PET substrate. The resulting films also show low coercivity (10 to 30 kA/m), a columnar structure (column width 30 to 50 nm), and signal and noise features as described earlier for media, deposited at low temperature directly on the PET substrate. From the slope of the perpendicular hysteresis loop, the maximum in the noise spectrum, the noise periodicity and erasure experiments the medium domain period is estimated to be 370 to 780 nm for a 600 nm thick Co-Cr layer. These domain periods are consistent with a continuous perpendicular film model of the medium.
Keywords :
chromium alloys; cobalt alloys; coercive force; crystal microstructure; ferromagnetic properties of substances; magnetic anisotropy; magnetic domains; magnetic hysteresis; magnetic recording; magnetic thin films; sputtered coatings; Co-Cr; Ge nucleation layers; Ge-CoCr; PET; RF sputtering; amorphous Ge underlayers; columnar structure; domain periods; erasure experiments; low coercivity; magnetic properties; noise features; noise periodicity; noise spectrum; perpendicular anisotropy; perpendicular hysteresis loop; perpendicular recording; recording properties; structural properties; Amorphous magnetic materials; Amorphous materials; Magnetic properties; Perpendicular magnetic recording; Polyethylene; Positron emission tomography; Radio frequency; Sputtering; Substrates; Temperature;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.11640
Filename :
11640
Link To Document :
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