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    Spin-wave Talbot effect in a thin ferromagnetic film

    Mateusz Gołębiewski1,*, Paweł Gruszecki1,2, Maciej Krawczyk1,†, and Andriy E. Serebryannikov1

    • 1Faculty of Physics, Adam Mickiewicz University, Uniwersytetu Poznańskiego 2, 61-614 Poznań, Poland
    • 2Institute of Molecular Physics, Polish Academy of Sciences, Mariana Smoluchowskiego 17, 60-179 Poznań, Poland

    • *matgol2@amu.edu.pl
    • †krawczyk@amu.edu.pl

    Phys. Rev. B 102, 134402 – Published 5 October, 2020

    DOI: https://doi.org/10.1103/PhysRevB.102.134402

    Abstract

    The Talbot effect has been known in linear optics since the 19th century and has found various technological applications. In this paper, with the help of micromagnetic simulations, we demonstrate the self-imaging phenomenon for spin waves in a thin, out-of-plane and in-plane magnetized ferromagnetic film whose propagation is described by the Landau-Lifshitz nonlinear equation. We show that the main features of the obtained Talbot carpets for spin waves can be described, to a large extent, by the approximate analytical formulas yielded by the general analysis of the wave phenomena. Our results indicate a route to a feasible experimental realization of the Talbot effect at low and high frequencies and offer interesting effects and possible applications in magnonics.

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