Title :
Thickness Dependence of (001) Texture Evolution and Magnetic Properties of Sputter-Deposited FePt:MgO Nanocomposite Films
Author :
Kim, Han Jae ; Kim, Kisoo ; Lee, Seong-Rae ; Jeung, Won Young
Author_Institution :
Dept. of Mater. Sci. & Eng., Korea Univ., Seoul
Abstract :
We investigate the effect of the number of bilayers (total film thickness) on the (001) texture development, L10 ordering reaction and magnetic properties in multilayered [FePt/MgO]6 films that were sputter deposited on thermally oxidized Si substrates. We obtained nearly perfectly L10 (001) oriented nanocomposite films when the initial multilayer structure was [FePt 2.8 nm/MgO 3.2 nm]6 and the total film thickness was 36 nm. When the film thickness was thicker than about 36 nm or the film was overaged, the grain orientation of the film developed in a random direction. The evolution of the (001) texture was favorable when the total film thickness was thin enough for the strain generated during the ordering transformation to relax in the plane normal direction, thus satisfying the plane stress condition. In addition, the disordered fcc FePt (200) texture grown on (200)-textured MgO in the as-deposited state also affected the L10 (001) texture evolution.
Keywords :
crystal microstructure; ferromagnetic materials; iron alloys; magnesium compounds; magnetic multilayers; magnetic thin films; nanocomposites; platinum alloys; sputter deposition; (001) texture evolution; FePt-MgO; L10 (001) oriented nanocomposite films; L10 ordering reaction; Si; film thickness; grain orientation; multilayered magnetic films; size 36 nm; sputter deposition; thermally oxidized silicon substrates; (001) texture; FePt; MgO; nanocomposite; thickness;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2008.2001608