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Ultrafast phonon-mediated melting of magnetism via itinerant spins in MnBi<sub>2</sub>Te<sub>4</sub>

ORAL

Abstract

A comprehensive understanding of spins away from equilibrium, including their interplay with lattice and electronic excitations is key to achieving fundamental breakthroughs in understanding how to manipulate topological phases with light. To this end, we study the ultrafast melting of magnetic order in the layered antiferromagnetic topological insulator MnBi2Te4. Here we use a multimodal experimental approach with ultrafast electron diffuse scattering to probe of nonequilibrium phonon dynamics, and magneto-optic Kerr rotation and resonant soft X-ray scattering are used to directly measure ultrafast dynamics of conduction and localized spins. Our experiments reveal that ultrafast demagnetization occurs through a previously unidentified p-like itinerant spin subsystem, with optical phonons acting as the primary channel for the dissipation of spin angular momentum. Localized Mn 3d5 spins disorder by a distinct, much slower thermalization mechanism, due to the quenched orbital angular momentum. The disparate demagnetization timescales in both spin subsystems provides evidence of a strong exchange coupling between the 3d­ localized spins and the p-like itinerant bands, which sheds light on the interatomic exchange pathways that enable magnetic topological phases.

Presenters

  • John W Freeland

    Argonne National Laboratory

Authors

  • John W Freeland

    Argonne National Laboratory

  • Hari Padmanabhan

    Pennsylvania State University

  • Vladimir A Stoica

    Pennsylvania State University

  • Peter K Kim

    University of California, San Diego

  • Maxwell Poore

    University of California, San Diego

  • Tiannan Yang

    Pennsylvania State University

  • Xiaozhe Shen

    SLAC National Accelerator Laboratory, SLAC, SLAC Natl Accelerator Lab

  • Alexander Reid

    SLAC - Natl Accelerator Lab, SLAC, SLAC National Accelerator Laboratory

  • Ming-Fu Lin

    SLAC, SLAC - Natl Accelerator Lab

  • Huaiyu Wang

    Pennsylvania State University

  • Nathan Koocher

    Northwestern University

  • Danilo Puggioni

    Northwestern University

  • Seng Huat Lee

    Pennsylvania State University

  • Aaron M Lindenberg

    Stanford Univ

  • Zhiqiang Mao

    Pennsylvania State University

  • James M Rondinelli

    Northwestern University

  • Xijie Wang

    SLAC, SLAC Natl Accelerator Lab

  • Long-Qing Chen

    Pennsylvania State University

  • Richard D Averitt

    University of California, San Diego

  • Venkatraman Gopalan

    Pennsylvania State University, Penn State University