• DocumentCode
    1015545
  • Title

    Lattice Expansion by Adding Oxygen to Control Crystallographic Orientations in Chemically Ordered L10 FePt Films

  • Author

    Lee, Hwan-Soo ; Kim, Jai-Young

  • Author_Institution
    Carnegie Mellon Univ., Pittsburgh
  • Volume
    43
  • Issue
    7
  • fYear
    2007
  • fDate
    7/1/2007 12:00:00 AM
  • Firstpage
    3149
  • Lastpage
    3152
  • Abstract
    We fabricated L10 FePt thin films by sputtering in reactive oxygen on polycrystalline glass substrates, and we investigated the magnetic properties and crystallographic orientations of the films. Oxygen addition during the FePt deposition promoted heteoroepitaxial growth by decreasing the lattice misfit with the Ag underlayer. In an oxygen/argon ratio of 1.5-3.0 vol.%, the in-plane lattice parameter of the FePt films expanded, and the lattice misfit with the Ag underlayer decreased from 6.3 to 3.9% in the as-deposited state, as determined by grazing incidence X-ray diffraction (GIXRD). Annealing at 700degC for 1 min produced a heteroepitaxially grown L10 (001) texture with a large out-of-plane coercivity of 8.8 kOe and a nucleation field of kOe. Transmission electron microscopy showed that average grain size in the as-deposited films was about 4-5 nm and was in the range of 10-15 nm in the annealed films, indicating that there was some grain growth.
  • Keywords
    X-ray diffraction; annealing; association; coercive force; epitaxial growth; ferromagnetic materials; grain growth; grain size; iron alloys; lattice constants; magnetic epitaxial layers; nucleation; platinum alloys; sputter deposition; texture; transmission electron microscopy; FePt; L10 (001) texture; annealing; chemically ordered films; crystallographic orientations; deposition; grain growth; grain size; grazing incidence X-ray diffraction; heteoroepitaxial growth; in-plane lattice parameter; lattice expansion; lattice misfit; nucleation; out-of-plane coercivity; oxygen addition; polycrystalline glass substrates; silver underlayer; sputtering; temperature 700 degC; time 1 min; transmission electron microscopy; Annealing; Chemicals; Crystallography; Glass; Lattices; Magnetic films; Magnetic properties; Oxygen; Sputtering; Substrates; Ag underlayer; FePt thin films; L1$_{0}$; lattice misfit; reactive oxygen sputtering;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2007.893165
  • Filename
    4252297