• DocumentCode
    3560300
  • Title

    Magnetoresistance and Switching Properties of Co–Fe/Pd-Based Perpendicular Anisotropy Single- and Dual-Spin Valves

  • Author

    Law, Randall ; Sbiaa, Rachid ; Liew, Thomas ; Chong, Tow Chong

  • Author_Institution
    Data Storage Inst., Agency for Sci. Technol. & Res. (A*STAR), Singapore
  • Volume
    44
  • Issue
    11
  • fYear
    2008
  • Firstpage
    2612
  • Lastpage
    2615
  • Abstract
    Switching characteristics and magnetoresistance of spin valves with perpendicular anisotropy based on Co-Fe/Pd multilayers deposited by ultrahigh vacuum (UHV) sputtering have been studied. In unpatterned thin films without exchange bias, high current-in-plane giant magnetoresistance (CIP-GMR) of 9.7% and 15.2% in single-spin valves (SSVs) and dual-spin valves (DSVs) was measured, a significant improvement over previous work. We describe the effects of a Ta seed layer and postdeposition annealing on the perpendicular anisotropy and magnetoresistance of Co-Fe/Pd spin valves, which can be attributed to improvements in the fcc (111) orientation of Pd and the formation of Co-Pd alloys at the Co-Fe/Pd interfaces, respectively. We also show that the coercivity of the layers can be tuned by varying the Co-Fe alloy composition in the multilayers, and describe the minor loops of perpendicular DSVs that exhibit four distinct resistance states, which is a potential structure for multistate storage devices.
  • Keywords
    annealing; cobalt; coercive force; giant magnetoresistance; iron; magnetic anisotropy; magnetic multilayers; magnetic switching; palladium; spin valves; sputter deposition; CoFe-Pd; Ta seed layer; coercivity; current-in-plane giant magnetoresistance; dual-spin valve; multilayers; multistate storage device; perpendicular anisotropy; postdeposition annealing; single-spin valve; switching properties; ultrahigh vacuum sputtering; Dual-spin valves (DSVs); giant magnetoresistance (GMR); multistate storage; perpendicular magnetic anisotropy (PMA);
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2008.2002631
  • Filename
    4717661