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Giant spin torque efficiency in naturally oxidized polycrystalline TaAs thin films

Materials Science 2023-02-24 v1

Abstract

We report the measurement of efficient charge-to-spin conversion at room temperature in Weyl semimetal/ferromagnet heterostructures with both oxidized and pristine interfaces. Polycrystalline films of the Weyl semimetal, TaAs, are grown by molecular beam epitaxy on (001) GaAs and interfaced with a metallic ferromagnet (Ni0.8_{0.8}Fe0.2_{0.2}). Spin torque ferromagnetic resonance (ST-FMR) measurements in samples with an oxidized interface yield a spin torque efficiency as large as ξFMR=0.45±0.25\xi_{\mathrm{FMR}}=0.45\pm 0.25 for a 8 nm Ni0.8_{0.8}Fe0.2_{0.2} layer thickness. By studying ST-FMR in these samples with varying Ni0.8_{0.8}Fe0.2_{0.2} layer thickness, we extract a damping-like torque efficiency as high as ξDL=1.36±0.66\xi_{\mathrm{DL}}=1.36\pm 0.66. In samples with a pristine (unoxidized) interface, the spin torque efficiency has opposite sign to that observed in oxidized samples (ξFMR=0.27±0.14\xi_{\mathrm{FMR}}=-0.27\pm 0.14 for a 5 nm Ni0.8_{0.8}Fe0.2_{0.2} layer thickness). We also find a lower bound on the spin Hall conductivity (424±110e424 \pm 110 \frac{\hbar}{e} S/cm) which is surprisingly consistent with theoretical predictions for the single crystal Weyl semimetal state of TaAs.

Keywords

Cite

@article{arxiv.2202.10656,
  title  = {Giant spin torque efficiency in naturally oxidized polycrystalline TaAs thin films},
  author = {Wilson Yanez and Yongxi Ou and Run Xiao and Supriya Ghosh and Jyotirmay Dwivedi and Emma Steinebronn and Anthony Richardella and K. Andre Mkhoyan and Nitin Samarth},
  journal= {arXiv preprint arXiv:2202.10656},
  year   = {2023}
}