Magnon contribution to the spin torque and magnetoresistance properties of FeCoB/MgO/FeCoB magnetic tunnel junctions

ORAL

Abstract

We have studied the spin-torque excited ferromagnetic resonance (ST-FMR) and the tunneling magnetoresistance (TMR) properties of FeCoB/MgO/FeCoB magnetic tunnel junctions as a function of temperature from 300K to 10K. We find that while the TMR increases by $\sim $ 50{\%} upon cooling to 10 K, the in-plane spin torque and the perpendicular or field-like torque both decrease substantially. The results demonstrate that while magnon-assisted tunneling degrades TMR, it acts to significantly enhance ST in MTJs, in accord with theoretical prediction. Moreover, the bias-dependent structure in both the asymmetry of the in-plane ST and the parallel conductance of the MTJ is more pronounced at low temperature, indicative of this asymmetry being due substantially to the interfacial electronic structure of the electrodes.

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Authors

  • Yun Li

    • School of Applied and Engineering Physics, Cornell University
    • Cornell Univ.
    • Cornell University, Ithaca, NY 14853
  • Hsin-wei Tseng

    • Cornell University, Ithaca, NY 14853
  • John Read

    • HGST,San Jose, California, 95135
  • Jordan Katine

    • HGST,San Jose, California, 95135
  • Daniel Ralph

    • Cornell University, Ithaca, NY 14853
  • Robert Buhrman

    • Cornell University, Ithaca, NY 14853