• DocumentCode
    1576573
  • Title

    Analysis of switching in uniformly magnetized bodies

  • Author

    Donahue, M.J. ; Porter, D.G.

  • Author_Institution
    Nat. Inst. of Stand. & Technol., Gaithersburg, MD, USA
  • fYear
    2002
  • Abstract
    Summary form only given. When defining standard problems for verifying micromagnetic calculations, one important limiting case is uniform magnetization. Exchange energy vanishes and the total energy can be simplified to the expression, E=(/spl mu//sub 0//2)M/sup T/DM-/spl mu//sub 0/H/sup T/M, where H=Hh is the applied field and by choice of coordinates the diagonal matrix D=diag(D/sub x/,D/sub y/,D/sub z/) accounts for self-magnetostatic and uniaxial anisotropy energy. This is the 3D analog to the familiar 2D Stoner-Wohlfarth model. Lagrange multiplier analysis defines M/sub /spl nu//= h/sub /spl nu///(D/sub /spl nu//-/spl lambda/) for /spl nu/= x, y, z and the constraint |M|= M/sub s/ leads to an equation to be solved for the n stationary points of total energy. Depending on the value of H, n may vary between 2 and 6. With the solutions /spl lambda//sub 1/ to /spl lambda//sub n/, in increasing order, our complete analysis shows that /spl lambda//sub 1/ corresponds to the global energy minimum and /spl lambda//sub n/ the global energy maximum. Examination of the solutions leads to an iterative calculation for the critical switching fields and a closed form calculation for the coercive field when it differs from the switching field.
  • Keywords
    coercive force; iterative methods; magnetic anisotropy; magnetic switching; magnetisation; micromagnetics; Lagrange multiplier analysis; coercive field; critical switching fields; exchange energy; iterative calculation; micromagnetic calculations; self-magnetostatic energy; total energy; uniaxial anisotropy energy; uniform magnetization; uniformly magnetized bodies; Anisotropic magnetoresistance; Artificial intelligence; Ellipsoids; Equations; Magnetic analysis; Magnetic materials; Magnetic switching; Saturation magnetization; Shape; Technological innovation;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Magnetics Conference, 2002. INTERMAG Europe 2002. Digest of Technical Papers. 2002 IEEE International
  • Conference_Location
    Amsterdam, The Netherlands
  • Print_ISBN
    0-7803-7365-0
  • Type

    conf

  • DOI
    10.1109/INTMAG.2002.1001457
  • Filename
    1001457