• DocumentCode
    1235341
  • Title

    Adjacent-track interference in dual-layer perpendicular recording

  • Author

    Jiang, Wen ; Smith, Neil ; Williams, Mason ; Weresin, Walter ; Kuroki, Kenji ; Ikeda, Yoshihiro ; Takano, Kentaro ; Khera, Gautam ; Wood, Roger

  • Author_Institution
    Hitachi Global Storage Technol., San Jose, CA, USA
  • Volume
    39
  • Issue
    4
  • fYear
    2003
  • fDate
    7/1/2003 12:00:00 AM
  • Firstpage
    1891
  • Lastpage
    1896
  • Abstract
    Adjacent-track interference (ATI) in a dual-layer perpendicular recording system arises during both writing and reading. During writing, the stray fields from the write head can cause side writing and side erasure. A dc-erase method using media with a low nucleation field is used to identify the extent and polarity of these fields. In media with a strong anisotropy in the soft underlayer (SUL), experimental results reveal that the fields causing ATI have a strong cross-track asymmetry due to interactions between the writing flux and the magnetization of the SUL. On readback, cross-track amplitude profiles taken at long wavelengths show a distinctive "side bump" predominantly on just one side of the track profile. This asymmetry is again found to be associated with the magnetization in the SUL. A theoretical study yields expressions for the lateral extent of the side reading and a critical bit length at which side reading becomes significant. Both of these are consistent with experimental observations. The onset of side erasure during writing is further equated with the time-dependent nucleation field of the medium. Theoretical arguments on thermal decay in the presence of external and demagnetizing field indicate that the threshold for ATI-associated side erasure is expected to follow a time dependence similar to Sharrock\´s formula for dynamic coercivity.
  • Keywords
    adjacent channel interference; coercive force; demagnetisation; magnetic heads; magnetic recording noise; perpendicular magnetic recording; SUL magnetization; Sharrock formula; adjacent-track interference; critical bit length; cross-track amplitude profiles; cross-track asymmetry; cross-track noise profile; dc-erase method; demagnetizing field; dual-layer perpendicular recording; dynamic coercivity; low nucleation field media; side bump; side erasure; side reading; side writing; soft underlayer; strong anisotropy media; thermal decay; time-dependent nucleation field; write head stray fields; writing flux magnetization interactions; Anisotropic magnetoresistance; Coercive force; Demagnetization; Interference; Magnetic heads; Magnetic noise; Magnetic recording; Perpendicular magnetic recording; Saturation magnetization; Writing;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2003.813784
  • Filename
    1211154