English

Electrical current switching of the noncollinear antiferromagnet Mn$_3$GaN

Materials Science 2019-08-12 v1

Abstract

We report electrical current switching of noncollinear antiferromagnetic (AFM) Mn3_3GaN/Pt bilayers at room temperature. The Hall resistance of these bilayers can be manipulated by applying a pulse current of 1.5×1061.5\times10^6~A/cm2^2, whereas no significant change is observed up to 108\sim10^8~A/cm2^2 in Mn3_3GaN single films, indicating that the Pt layer plays an important role. In comparison with ferrimagnetic Mn3_3GaN/Pt bilayers, a lower electrical current switching of noncollinear AFM Mn3_3GaN is demonstrated, with a critical current density two orders of magnitude smaller. Our results highlight that a combination of a noncollinear AFM antiperovskite nitride and a spin-torque technique is a good platform of AFM spintronics.

Keywords

Cite

@article{arxiv.1907.05544,
  title  = {Electrical current switching of the noncollinear antiferromagnet Mn$_3$GaN},
  author = {T. Hajiri and S. Ishino and K. Matsuura and H. Asano},
  journal= {arXiv preprint arXiv:1907.05544},
  year   = {2019}
}

Comments

The following article has been accepted by Applied Physics Letter