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Ultrafast terahertz field control of the emergent electronic and magnetic interactions at the CaMnO<sub>3</sub>/LaNiO<sub>3</sub> ferromagnetic interface

ORAL

Abstract

Ultrafast electric-field control of electronic and magnetic dynamics in oxide materials has great potential as a strategy for the future development of faster and more efficient logic and memory devices. LaNiO3/CaMnO3 superlattices display emergent ferromagnetism at the interface of paramagnetic LaNiO3 and antiferromagnetic CaMnO3 which can be tuned via control of the thickness-dependent metal-insulator transition in LaNiO3. We utilized temperature- and fluence-dependent time-resolved magneto-optic Kerr effect, optical reflectivity, and transmissivity spectroscopies of variable-thickness LaNiO3/CaMnO3 superlattices to disentangle multiple interrelated electronic and magnetic processes driven by ultrafast high-field terahertz pulses. Detailed analysis of temperature- and field-dependent amplitudes and time constants for the various electronic and magnetic components of the dynamics are presented. These findings suggest an avenue for efficient electric-field switching of two-dimensional ferromagnetic states at oxide interfaces.

[1] Grutter et al., Phys. Rev. Lett. 111, 087202 (2013); [2] Flint et al., Phys. Rev. Materials 1, 024404 (2017); [3] Chandrasena et al., Phys. Rev. B 98, 155103 (2018).

Publication: A. M. Derrico, J. R. Paudel, M. Basini, V. Unikandanunni, M. Terilli, M. Kareev, J. Chakhalian, S. Bonetti, and A. X. Gray, in preparation (2022).

Presenters

  • Abigail M Derrico

    Temple University

Authors

  • Abigail M Derrico

    Temple University

  • Jay R Paudel

    Temple University

  • Martina Basini

    Stockholm University

  • Vivek Unikandanunni

    Stockholm University, Univ Stockholm

  • Michael Terilli

    Rutgers University, Rutgers University, New Brunswick

  • Mikhail S Kareev

    Rutgers University, New Brunswick, Rutgers University

  • Jak Chakhalian

    Rutgers University, Rutgers

  • Stefano Bonetti

    Department of Physics, Stockholm University, SE-106 91 Stockholm, Sweden and Ca Foscari University of Venice, 30123 Venice, Italy, Stockholm University, Ca' Foscari University of Venice, Stockholm Univ

  • Alex X Gray

    Temple University, Department of Physics, Temple University, Philadelphia, Pennsylvania 19122, USA