English

Identification of N\'eel vector orientation in antiferromagnetic domains switched by currents in NiO/Pt thin films

Materials Science 2021-03-24 v3

Abstract

Understanding the electrical manipulation of antiferromagnetic order is a crucial aspect to enable the design of antiferromagnetic devices working at THz frequency. Focusing on collinear insulating antiferromagnetic NiO/Pt thin films as a materials platform, we identify the crystallographic orientation of the domains that can be switched by currents and quantify the N\'eel vector direction changes. We demonstrate electrical switching between different T-domains by current pulses, finding that the N\'eel vector orientation in these domains is along [±5 ±5 19][\pm5\ \pm5\ 19], different compared to the bulk <112ˉ><11\bar{2}> directions. The final state of the N\'eel vector n\textbf{n} switching after current pulses j\textbf{j} along the [1 ±1 0][1\ \pm1\ 0] directions is nj\textbf{n}\parallel \textbf{j}. By comparing the observed N\'eel vector orientation and the strain in the thin films, assuming that this variation arises solely from magnetoelastic effects, we quantify the order of magnitude of the magnetoelastic coupling coefficient as b0+2b1=3107J m3b_{0}+2b_{1}=3*10^7 J\ m^{-3} . This information is key for the understanding of current-induced switching in antiferromagnets and for the design and use of such devices as active elements in spintronic devices.

Keywords

Cite

@article{arxiv.2008.08507,
  title  = {Identification of N\'eel vector orientation in antiferromagnetic domains switched by currents in NiO/Pt thin films},
  author = {Christin Schmitt and Lorenzo Baldrati and Luis Sanchez-Tejerina and Felix Schreiber and Andrew Ross and Mariia Filianina and Shilei Ding and Felix Fuhrmann and Rafael Ramos and Francesco Maccherozzi and Dirk Backes and Mohamad A. Mawass and Florian Kronast and Sergio Valencia and Eiji Saitoh and Giovanni Finocchio and Mathias Kläui},
  journal= {arXiv preprint arXiv:2008.08507},
  year   = {2021}
}