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Bulk-mediated reflection of chirality-protected surface spin waves

  • Vitaliy I. Vasyuchka
  • , Florin Ciubotaru
  • , Andrii V. Chumak
  • , Burkard Hillebrands
  • , Alexander A. Serga

Publications: Working paperPreprint

Abstract

Surface spin waves of the Damon-Eshbach type exhibit intrinsically nonreciprocal transport properties with a chiral dynamical field structure that localizes counterpropagating waves at opposite film surfaces. Such chirality has been predicted to suppress direct backscattering in thin films within frequency ranges free of bulk modes. However, how chirality influences reflection in thicker three-dimensional magnetic media, where a dense spectrum of bulk excitations overlaps with surface waves, remains unclear. Here we demonstrate that, in micrometer-thick yttrium iron garnet films, reflection of the chiral Damon-Eshbach wave from the boundary of the magnetic medium is accompanied by excitation of spatially localized thickness-quantized bulk modes, whereas reciprocal backward-volume waves reflect nearly elastically. Brillouin light scattering spectroscopy, infrared thermography, and micromagnetic simulations reveal standing bulk excitations at the reflecting boundary and quantify the associated magnon energy accumulation and dissipation. These results identify bulk-mode excitations as the physical pathway enabling reversal of chirally localized surface waves in thick films, thereby defining the limits of chirality-based backscattering immunity and providing a general framework for wave transport in nonreciprocal magnetic media.
Original languageEnglish
PublisherarXiv
Publication statusPublished - 8 May 2026

Funding

This research was funded in part by the Deutsche Forschungsgemeinschaft (DFG, German Research Foun- dation) in the framework of TRR 173 – Grant No. 268565370 “Spin+X” (Projects B01 and B13) and by the Austrian Science Fund (FWF) through the project Mag- Neuro [10.55776/PIN1434524]

Austrian Fields of Science 2012

  • 103017 Magnetism

Keywords

  • cond-mat.other
  • nlin.PS
  • physics.app-ph
  • physics.class-ph

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