English

Efficient spin torques in antiferromagnetic CoO/Pt quantified by comparing field- and current- induced switching

Materials Science 2021-02-19 v3

Abstract

We achieve current-induced switching in collinear insulating antiferromagnetic CoO/Pt, with fourfold in-plane magnetic anisotropy. This is measured electrically by spin Hall magnetoresistance and confirmed by the magnetic field-induced spin-flop transition of the CoO layer. By applying current pulses and magnetic fields, we quantify the efficiency of the acting current-induced torques and estimate a current-field equivalence ratio of 4x1011TA1m24x10^{-11} T A^{-1} m^2. The N\'eel vector final state (njn \perp j) is in line with a thermomagnetoelastic switching mechanism for a negative magnetoelastic constant of the CoO.

Keywords

Cite

@article{arxiv.2003.05923,
  title  = {Efficient spin torques in antiferromagnetic CoO/Pt quantified by comparing field- and current- induced switching},
  author = {Lorenzo Baldrati and Christin Schmitt and Olena Gomonay and Romain Lebrun and Rafael Ramos and Eiji Saitoh and Jairo Sinova and Mathias Kläui},
  journal= {arXiv preprint arXiv:2003.05923},
  year   = {2021}
}

Comments

16 pages (manuscript and supplementary), 12 figures. Acknowledgments corrected

R2 v1 2026-06-23T14:13:08.116Z