Title :
Study of Magnetic Easy Axis 3-D Arrangement in L1
CoPt(111)/Pt(111)/MgO(100) Tilted System for Perpendicular Recording
Author :
Varvaro, Gaspare ; Agostinelli, Elisabetta ; Laureti, Sara ; Testa, Alberto M. ; Generosi, Amanda ; Paci, Barbara ; Albertini, Valerio Rossi
Author_Institution :
Inst. of Mater. Struct., Rome
fDate :
5/1/2008 12:00:00 AM
Abstract :
We report a study of angular magnetic properties of high-anisotropy L10 CoPt (111) films having a tilted magnetic easy axis configuration without an oblique-grain microstructure. In particular, we investigated the field dependence of remanent magnetization while rotating the magnetic field inside three intersecting planes. The out-of-plane tilting of the L10 c-axis (the easy axis of the tetragonal cell) was induced by using a Pt (111) underlayer deposited onto a single-crystal MgO substrate in a conventional frontal pulsed laser deposition (PLD). The observed behavior is consistent with the presence of four easy axes with mutually orthogonal in-plane projections, symmetrically tilted at 36deg with respect to the film plane. Such a system can be used, like a common single-axis tilted medium, to record information in perpendicular mode, lowering the writing field to approximately 75% of the value along the easy direction, while still maintaining the high thermal stability typical of the L10 alloy. Moreover, the in-plane charge compensation arising from this easy axis arrangement when a perpendicular writing field is applied may favor a media noise reduction and better performance with respect to a single-axis tilted system.
Keywords :
cobalt alloys; magnesium compounds; perpendicular magnetic recording; platinum; platinum alloys; remanence; thermal stability; CoPt(111); CoPt-Pt-MgO; MgO(100); Pt(111); angular magnetic properties; frontal pulsed laser deposition; high-anisotropy films; in-plane charge compensation; magnetic easy axis 3D arrangement; media noise reduction; out-of-plane tilting; perpendicular recording; remanent magnetization; single-axis tilted system; thermal stability; tilted magnetic easy axis configuration; EDXD; L1 $_{0}$ CoPt (111); PLD; tilted magnetic recording;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2008.918205