Optically induced ultrafast switching dynamics in antiferromagnets

ORAL

Abstract

The dynamics of magnetic materials on ultrafast timescales is a complex area of research, as it deals with nonlinear processes far from equilibrium. The potential for applications however, in particular in the development of fast and effecient magnetic storage devices, is promising. While first investigations into ultrafast demagnetisation [1] and all-optical switching [2] have focused on ferro- and ferrimagnets, more recent research in spintronics has put forward antiferromagnets as advantageous alternatives. Their vanishing net magnetisation makes them less susceptible to perturbations by external magnetic fields and their intrinsic dynamics are exchange-enhanced leading to eigenfrequencies in the terahertz range. Here, we investigate systematically how the demagnetisation and switching dynamics differ depending on the type of magnetic order. Using spin dynamics simulations in combination with density functional theory, we show how ultrafast laser-induced switching can be realised in antiferromagnets [3]. In contrast to ferro- and ferrimagnets, where a heat-induced quenching of the magnetic order is necessary to facilitate switching, we find that in antiferromagnets, the inverse Faraday effect can induce a coherent rotation of the Néel vector. We also demonstrate how a series of laser pulses can be used to reliably switch between two perpendicular magnetic states.

[1] E. Beaurepaire et al., Phys. Rev. Lett. 76, 4250 (1996).

[2] C. D. Stanciu et al, Phys. Rev. Lett. 99, 047601 (2007).

[3] T. Dannegger et al., Phys. Rev. B 104, L060413 (2021).

*We acknowledge support from the German Research Foundation (DFG) under Grant No. 290/5-1 and through CRC/TRR 227, the Swedish Research Council (VR), the K. and A. Wallenberg Foundation under Grant No. 2015.0060, the Horizon2020 Framework Programme of the European Commission under FET-Open Grants No. 737093 and 863155, and the Czech Science Foundation under Granz No. 19-13659S.

Publication: Tobias Dannegger, Marco Berritta, Karel Carva, Severin Selzer, Ulrike Ritzmann, Peter M. Oppeneer, and Ulrich Nowak. "Ultrafast coherent all-optical switching of an antiferromagnet with the inverse Faraday effect" Phys. Rev. B 104, L060413 (2021)

Presenters

  • Tobias Dannegger

    • Universität Konstanz

Authors

  • Tobias Dannegger

    • Universität Konstanz
  • Marco Berritta

    • University of Exeter
    • Uppsala University
  • Karel Carva

    • Charles University
    • Charles University, Faculty of Mathematics and Physics, Department of Condensed Matter
  • Lukas Dörfelt

    • Universität Konstanz
  • Peter M Oppeneer

    • Uppsala University
  • Ulrich Nowak

    • University of Konstanz