Coherent excitation of heterosymmetric spin waves with ultrashort wavelengths


Coherent excitation of heterosymmetric spin waves with ultrashort wavelengths

Dieterle, G.; Förster, J.; Stoll, H.; Semisalova, A. S.; Finizio, S.; Gangwar, A.; Weigand, M.; Noske, M.; Fähnle, M.; Bykova, I.; Bozhko, D. A.; Musiienko-Shmarova, H. Y.; Tiberkevich, V.; Slavin, A. N.; Back, C. H.; Raabe, J.; Schütz, G.; Wintz, S.

Abstract

In the emerging field of magnonics, spin waves are foreseen as signal carriers for future spintronic information processing and communication devices, owing to both the very low power losses and a high device miniaturisation potential predicted for short-wavelength spin waves. Yet, the controlled and efficient excitation of propagating nanoscale spin waves remains a challenge to be resolved. Here, we report the observation of high-amplitude, ultrashort dipole-exchange spin waves (down to 80 nm wavelength at 10 GHz frequency) in a ferromagnetic single layer system, coherently excited by the driven dynamics of a spin vortex core. We used time-resolved x-ray microscopy to directly image such propagating spin waves for a wide range of excitation frequencies. By further analysis, we found that these waves exhibit a heterosymmetric mode profile, involving regions with anti-Larmor precession sense and purely linear magnetic oscillation. In particular, this mode profile consists of dynamic vortices with laterally alternating helicity, leading to a partial magnetic flux closure over the film thickness, which is explained by a strong and unexpected mode hybridisation. The spin-wave phenomenon observed is a general effect inherent to the dynamics of sufficiently thick ferromagnetic single layer films, independent of the specific excitation method employed.

Keywords: spin wave vortex x-ray microscopy

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Verknüpfte Publikationen

  • Physical Review Letters 122(2019), 117202
    DOI: 10.1103/PhysRevLett.122.117202
    Cited 72 times in Scopus
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  • WWW-Beitrag
    arXiv:1712.00681v3 [cond-mat.mes-hall]: https://arxiv.org/abs/1712.00681
  • Vortrag (Konferenzbeitrag)
    Magnonics 2019, 28.07.-01.08.2019, Carovigno, Italien

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