• DocumentCode
    1100566
  • Title

    Off-diagonal magnetoimpedance in NiFe-Au-NiFe layered film and its application to linear magnetic sensors

  • Author

    Fry, Nick ; Makhnovskiy, Dmitriy P. ; Panina, Larissa V. ; Sandacci, Serghei I. ; Mapps, Des J. ; Akhter, Muzaffar

  • Author_Institution
    Sch. of Comput., Univ. of Plymouth, UK
  • Volume
    40
  • Issue
    5
  • fYear
    2004
  • Firstpage
    3358
  • Lastpage
    3367
  • Abstract
    We have measured the field dependence of the off-diagonal impedance in the megahertz frequency range for a NiFe-Au-NiFe layered film using a helical microcoil. The film and the coil were deposited by means of radio-frequency sputtering, and a transverse anisotropy in magnetic layers was established by applying a dc magnetic field during the deposition and by postproduction annealing. The film had 5 mm length, 50 μm width, and 1.5 μm total thickness. The helical microcoil had 23 turns with a 50 μm turn width. We applied high-frequency excitation by means of the coil current and measured the induced voltage across the film stripe. This voltage response is directly proportional to the off-diagonal component of the total impedance tensor. We found that the plots of the real and imaginary parts of the off-diagonal impedance, as functions of the applied dc magnetic field, are antisymmetrical with respect to the field direction. The dc bias current through the film plays an important role: without the bias current, the measured signal is very small and irregular. The field antisymmetry demonstrated by the off-diagonal impedance can be utilized in highly sensitive and linear magnetic sensors, and we discuss the principles of operation of such sensors here.
  • Keywords
    ferromagnetic materials; giant magnetoresistance; gold; iron alloys; magnetic anisotropy; magnetic annealing; magnetic multilayers; magnetic sensors; nickel alloys; sputter deposition; tensors; 1.5 micron; 5 mm; 50 micron; NiFe-Au-NiFe; antisymmetrical magnetoimpedance; asymmetrical magnetoimpedance; dc bias current; dc magnetic field function; field dependence; helical microcoil; high-frequency excitation; highly sensitive magnetic sensor; impedance tensor; layered thin film; linear magnetic sensor; linear magnetic sensors; magnetic layers; magnetoimpedance sensor; megahertz frequency range; off-diagonal magnetoimpedance; planar coil; postproduction annealing; radio-frequency sputtering deposition; transverse anisotropy; Coils; Current measurement; Frequency measurement; Impedance measurement; Magnetic anisotropy; Magnetic field measurement; Magnetic films; Magnetic sensors; Perpendicular magnetic anisotropy; Voltage; Antisymmetrical and asymmetrical magnetoimpedance; layered thin film; magnetoimpedance effect; magnetoimpedance sensor; magnetoimpedance tensor; off-diagonal impedance; planar coil;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2004.831667
  • Filename
    1333147