• DocumentCode
    994331
  • Title

    Determination of the Anisotropy Field Distribution in Perpendicular Media and Its Correlation With Microstructure and Recording

  • Author

    Ju, Ganping ; Bin Lu ; Van de Veerdonk, René J M ; Wu, Xiaowei ; Klemmer, Timothy J. ; Zhou, Hong ; Chantrell, Roy ; Sunder, Ashwin ; Asselin, Pierre ; Kubota, Yukiko ; Weller, Dieter

  • Author_Institution
    Seagate Res., Pittsburgh, PA
  • Volume
    43
  • Issue
    2
  • fYear
    2007
  • Firstpage
    627
  • Lastpage
    632
  • Abstract
    A complex transverse ac susceptibility (chiT) technique based on magneto-optical detection has been developed with sufficient sensitivity for thin-film recording media. The technique has been used to measure the dispersions in grain size and the anisotropy field of perpendicular magnetic recording media. Experiments have been designed to study the key factors contributing to the anisotropy field distribution (sigmaHk) in perpendicular media. The correlation between anisotropy dispersion, stacking faults, and recording performance have also been studied. A good correlation between stacking faults and sigmaHK has been established. Lower stacking faults result in smaller anisotropy distribution and better media signal-to-noise ratio. The main factors controlling stacking faults are studied. Theoretical studies of the effect of interactions on the chiT are also presented
  • Keywords
    magnetic susceptibility; magnetic thin film devices; perpendicular magnetic anisotropy; perpendicular magnetic recording; anisotropy dispersion; anisotropy field distribution; magneto-optical detection; media signal-to-noise ratio; microstructure; perpendicular magnetic recording media; recording performance; stacking faults; thin-film recording media; transverse ac susceptibility; Anisotropic magnetoresistance; Magnetic field measurement; Magnetic susceptibility; Magnetooptic effects; Magnetooptic recording; Microstructure; Perpendicular magnetic recording; Size measurement; Stacking; Transistors; AC suscptibility; anisotropy distribution; magnetic recording; perpendicular media; stacking faults;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2006.888205
  • Filename
    4069031