• DocumentCode
    974602
  • Title

    Henkel plots in a thermally demagnetized scalar Preisach model

  • Author

    Mitchler, P.D. ; Dahlberg, E.Dan ; Engle, E. ; Roshko, R.M.

  • Author_Institution
    Dept. of Phys., Manitoba Univ., Winnipeg, Man., Canada
  • Volume
    31
  • Issue
    5
  • fYear
    1995
  • fDate
    9/1/1995 12:00:00 AM
  • Firstpage
    2499
  • Lastpage
    2503
  • Abstract
    The implications of thermal demagnetization with respect to the observation of interaction effects in Henkel plots are discussed within the framework of a scalar moving Preisach model. The Preisach distribution is assumed to be a product of a Gaussian coercive field distribution and a Gaussian interaction field distribution. Numerical calculations of the magnetizing and demagnetizing remanences show that, by contrast with other demagnetizing procedures, thermal demagnetization yields Henkel plots whose direction of curvature is uniquely related to the sign of the mean interaction field. In particular, a distribution of interaction fields which is symmetric about the origin yields the same linear Wohlfarth relation as a completely noninteracting system, while demagnetizing (magnetizing)-like mean fields always curve the Henkel plot below (above) the Wohlfarth line. The simple linearity of the Henkel plot in the absence of mean field effects was exploited to evaluate the effectiveness of a recent proposal for experimentally suppressing shape demagnetizing effects in perpendicular recording media
  • Keywords
    coercive force; demagnetisation; magnetic hysteresis; perpendicular magnetic recording; remanence; Gaussian coercive field distribution; Henkel plots; interaction effects; linear Wohlfarth relation; perpendicular recording media; remanences; scalar Preisach model; shape demagnetizing effects; thermal demagnetization; Demagnetization; Linearity; Magnetic hysteresis; Magnetization; Perpendicular magnetic recording; Physics; Proposals; Remanence; Scanning probe microscopy; Shape;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/20.406551
  • Filename
    406551