Title :
Ni-Fe-O intermediate layer and [Ni-Fe/Si]n laminated soft underlayer for backlayer of Co-Cr-Ta-Pt perpendicular recording media
Author :
Kong, S.H. ; Okamoto, T. ; Kim, K.H. ; Nakagawa, S.
Author_Institution :
Tokyo Inst. of Technol., Japan
fDate :
9/1/2002 12:00:00 AM
Abstract :
Ni-Fe-O layers prepared by a natural oxidation method were examined for the intermediate layer between Co-Cr-Ta(-Pt) recording layers and soft magnetic [Ni-Fe/Si]n multilayered backlayers in perpendicular magnetic recording media. [Ni-Fe/Si]n multilayers exhibited soft magnetic properties and improved the c axis orientation of Co-Cr-Ta crystallites in the recording layer deposited on them. Ni-Fe-O intermediate layers were suitable to obtain a finer grain as well as epitaxial growth in Co-Cr-Ta(-Pt) recording layers. The intermediate layer was effective in reducing media noise for high recording density applications.
Keywords :
chromium alloys; cobalt alloys; crystal orientation; grain size; iron alloys; iron compounds; magnetic multilayers; magnetic recording noise; nickel alloys; nickel compounds; perpendicular magnetic recording; platinum alloys; silicon; soft magnetic materials; tantalum alloys; Co-Cr-Ta crystallites; Co-Cr-Ta-Pt perpendicular recording media; CoCrTaPt; Ni-Fe-O intermediate layer; NiFe-Si; NiFeO; [Ni-Fe/Si]n laminated soft underlayer; c axis orientation; epitaxial growth; high recording density; linear recording density; media noise; natural oxidation method; soft magnetic [Ni-Fe/Si]n multilayered backlayers; Crystallization; Epitaxial growth; Magnetic multilayers; Magnetic noise; Magnetic properties; Magnetic recording; Noise reduction; Oxidation; Perpendicular magnetic recording; Soft magnetic materials;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2002.801794