English

Spin torque study of the spin Hall conductivity and spin diffusion length in platinum thin films with varying resistivity

Mesoscale and Nanoscale Physics 2016-03-30 v1

Abstract

We report measurements of the spin torque efficiencies in perpendicularly-magnetized Pt/Co bilayers where the Pt resistivity ρPt\rho_{Pt} is strongly dependent on thickness tPtt_{Pt} . The damping-like spin Hall torque efficiency per unit current density, ξDLj\xi^j_{DL} , varies significantly with tPtt_{Pt}, exhibiting a peak value ξDLj=0.12\xi^j_{DL}=0.12 at tPt=2.83.9t_{Pt} = 2.8 - 3.9 nm. In contrast, ξDLj/ρPt\xi^j_{DL}/\rho_{Pt} increases monotonically with tPtt_{Pt} and saturates for tPt>5t_{Pt} > 5 nm, consistent with an intrinsic spin Hall effect mechanism, in which ξDLj\xi^j_{DL} is enhanced by an increase in ρPt\rho_{Pt} . Assuming the Elliott-Yafet spin scattering mechanism dominates we estimate that the spin diffusion length λs=(0.77±0.08)×1015Ωm2/ρPt\lambda_s = (0.77 \pm 0.08) \times 10^{-15} \Omega m^2 /\rho_{Pt}.

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Cite

@article{arxiv.1512.06931,
  title  = {Spin torque study of the spin Hall conductivity and spin diffusion length in platinum thin films with varying resistivity},
  author = {Minh-Hai Nguyen and D. C. Ralph and R. A. Buhrman},
  journal= {arXiv preprint arXiv:1512.06931},
  year   = {2016}
}

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