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Transient magnetic gratings on the nanometer scale.
Weder, D; von Korff Schmising, C; Günther, C M; Schneider, M; Engel, D; Hessing, P; Strüber, C; Weigand, M; Vodungbo, B; Jal, E; Liu, X; Merhe, A; Pedersoli, E; Capotondi, F; Lüning, J; Pfau, B; Eisebitt, S.
  • Weder D; Max-Born-Institute for Nonlinear Optics and Short Pulse Spectroscopy, 12489 Berlin, Germany.
  • von Korff Schmising C; Max-Born-Institute for Nonlinear Optics and Short Pulse Spectroscopy, 12489 Berlin, Germany.
  • Günther CM; Zentraleinrichtung Elektronenmikroskopie (ZELMI), Technische Universität Berlin, 10623 Berlin, Germany.
  • Schneider M; Max-Born-Institute for Nonlinear Optics and Short Pulse Spectroscopy, 12489 Berlin, Germany.
  • Engel D; Max-Born-Institute for Nonlinear Optics and Short Pulse Spectroscopy, 12489 Berlin, Germany.
  • Hessing P; Max-Born-Institute for Nonlinear Optics and Short Pulse Spectroscopy, 12489 Berlin, Germany.
  • Strüber C; Max-Born-Institute for Nonlinear Optics and Short Pulse Spectroscopy, 12489 Berlin, Germany.
  • Weigand M; Helmholtz-Zentrum Berlin für Materialien und Energie, 12489 Berlin, Germany.
  • Vodungbo B; Sorbonne Université, CNRS, Laboratoire de Chimie Physique-Matière et Rayonnement, LCPMR, 75005 Paris, France.
  • Jal E; Sorbonne Université, CNRS, Laboratoire de Chimie Physique-Matière et Rayonnement, LCPMR, 75005 Paris, France.
  • Liu X; Sorbonne Université, CNRS, Laboratoire de Chimie Physique-Matière et Rayonnement, LCPMR, 75005 Paris, France.
  • Merhe A; Sorbonne Université, CNRS, Laboratoire de Chimie Physique-Matière et Rayonnement, LCPMR, 75005 Paris, France.
  • Pedersoli E; Elettra-Sincrotrone Trieste, Basovizza, 34149 Trieste, Italy.
  • Capotondi F; Elettra-Sincrotrone Trieste, Basovizza, 34149 Trieste, Italy.
  • Lüning J; Helmholtz-Zentrum Berlin für Materialien und Energie, 12489 Berlin, Germany.
  • Pfau B; Max-Born-Institute for Nonlinear Optics and Short Pulse Spectroscopy, 12489 Berlin, Germany.
Struct Dyn ; 7(5): 054501, 2020 Sep.
Article en En | MEDLINE | ID: mdl-32923511
ABSTRACT
Laser-driven non-local electron dynamics in ultrathin magnetic samples on a sub-10 nm length scale is a key process in ultrafast magnetism. However, the experimental access has been challenging due to the nanoscopic and femtosecond nature of such transport processes. Here, we present a scattering-based experiment relying on a laser-induced electro- and magneto-optical grating in a Co/Pd ferromagnetic multilayer as a new technique to investigate non-local magnetization dynamics on nanometer length and femtosecond timescales. We induce a spatially modulated excitation pattern using tailored Al near-field masks with varying periodicities on a nanometer length scale and measure the first four diffraction orders in an x-ray scattering experiment with magnetic circular dichroism contrast at the free-electron laser facility FERMI, Trieste. The design of the periodic excitation mask leads to a strongly enhanced and characteristic transient scattering response allowing for sub-wavelength in-plane sensitivity for magnetic structures. In conjunction with scattering simulations, the experiment allows us to infer that a potential ultrafast lateral expansion of the initially excited regions of the magnetic film mediated by hot-electron transport and spin transport remains confined to below three nanometers.

Texto completo: 1 Banco de datos: MEDLINE Idioma: En Año: 2020 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Idioma: En Año: 2020 Tipo del documento: Article