• DocumentCode
    804946
  • Title

    Giant Magnetoresistance in Co/Cu Multilayers Prepared by Vacuum Evaporation and Sputtering Methods

  • Author

    Tsunoda, M. ; Takahashi, M. ; Miyazaki, T.

  • Author_Institution
    Mitsubishi Materials Co.
  • Volume
    9
  • Issue
    3
  • fYear
    1994
  • Firstpage
    133
  • Lastpage
    140
  • Abstract
    Co/Cu multilayer films were deposited on glass substrate by both vacuum evaporation and sputtering methods. Pure Cu films were also prepared by the same methods. The surface morphology and resistivity were investigated in order to determine the influence of the preparation methods on the film structure. The MR ratio oscillates with the Cu layer thickness dCu in sputtered multilayer films prepared at low Ar pressure (15 mTorr), whereas it increases monotonically with dCu in sputtered multilayer films prepared at high Ar pressure (50 mTorr). On the other hand, the MR ratio oscillates with dCu only beyond 20Ã… in evaporation-deposited multilayer films prepared at a high deposition rate (2Ã…/s). The MR ratio of the samples perpared at a low deposition rate (0.5Ã…/s) is nearly zero. AFM observations of the multilayer and Cu films indicated the existence of a rumpling of the layered structure, with a fluctuation period of 100 to 500Ã…. The fluctuation of the rumpling is large in multilayer films evaporation-deposited at a low rate (0.5Ã…/s) and small in multilayer films sputter-deposited at low pressure (15 mTorr). The difference in the MR ratios of samples prepared by the two methods and under different conditions is mainly due to the differences in multilayer stacking structures.
  • Keywords
    Argon; Conductivity; Fluctuations; Giant magnetoresistance; Glass; Magnetic multilayers; Nonhomogeneous media; Sputtering; Substrates; Surface morphology;
  • fLanguage
    English
  • Journal_Title
    Magnetics in Japan, IEEE Translation Journal on
  • Publisher
    ieee
  • ISSN
    0882-4959
  • Type

    jour

  • DOI
    10.1109/TJMJ.1994.4565870
  • Filename
    4565870