• DocumentCode
    1384286
  • Title

    Antiferromagnetic and hard-magnetic stabilization schemes for magnetoresistive sensors

  • Author

    Lin, Tsann ; Gorman, Grace L. ; Ching Tsano

  • Author_Institution
    IBM Storage Syst. Div., Almaden Res. Center, San Jose, CA, USA
  • Volume
    32
  • Issue
    5
  • fYear
    1996
  • fDate
    9/1/1996 12:00:00 AM
  • Firstpage
    3443
  • Lastpage
    3445
  • Abstract
    Antiferromagnetic Ni-Mn and hard-magnetic CoPt-Cr stabilization schemes for magnetoresistive (MR) sensors are evaluated in this paper. Magnetic properties of Ni-Fe(bottom)/Ni-Mn(top), Ni-Mn/Ni-Fe, Co-Pt-Cr, Ni-Fe/Co-Pt-Cr and Co-Pt-Cr/Ni-Fe films used in various types of MR sensors are characterized, and the read performance of two types of MR sensors, one overlaid with a Ni-Mn film in tail regions and the other abutted with a Co-Pt-Cr film, is then studied. In the Ni-Mn stabilization scheme, the unidirectional anisotropy field of the Ni-Fe/Ni-Mn films increases when the MR sensor is thinner, and the MR responses are quiet and stable. In the Co-Pt-Cr stabilization scheme, the remanence magnetic moment and coercivity of the Co-Pt-Cr film decrease when the film is thinner, and the MR responses are quiet and stable when the magnetic moment of the Co-Pt-Cr film is higher than that of the MR film. This magnetic moment cannot be very high to prevent the reduction of sensor sensitivity and effective readwidth. To select a suitable stabilization scheme for thinner MR sensors, simplicity in sensor magnetics and fabrication should also be considered
  • Keywords
    antiferromagnetic materials; coercive force; magnetic anisotropy; magnetic heads; magnetic moments; magnetic sensors; magnetoresistive devices; remanence; Ni-Fe film; NiFe-CoPtCr; NiFe-NiMn; abutted structure; antiferromagnetic Ni-Mn; coercivity; hard-magnetic CoPt-Cr; magnetic moment; magnetic properties; magnetoresistive sensor; overlaid structure; read performance; remanence; stabilization; unidirectional anisotropy field; Anisotropic magnetoresistance; Antiferromagnetic materials; Magnetic films; Magnetic moments; Magnetic properties; Magnetic sensors; Remanence; Sensor phenomena and characterization; Tail; Thin film sensors;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/20.538651
  • Filename
    538651