Nanoscale magnonic Fabry-Pérot resonator for low-loss spin-wave manipulation

Compared to electromagnetic waves, the wavelength of spin waves is significantly shorter at gigahertz frequencies, enabling the miniaturisation of wave-based devices. Here, the authors present a magnonic Fabry-Pérot resonator allowing for nanoscale and reconfigurable manipulation of spin waves.

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Détails bibliographiques
Auteurs principaux: Huajun Qin, Rasmus B. Holländer, Lukáš Flajšman, Felix Hermann, Rouven Dreyer, Georg Woltersdorf, Sebastiaan van Dijken
Format: article
Langue:EN
Publié: Nature Portfolio 2021
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Q
Accès en ligne:https://doaj.org/article/28f4d088a5da4ffcae96bfd8734f408b
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Description
Résumé:Compared to electromagnetic waves, the wavelength of spin waves is significantly shorter at gigahertz frequencies, enabling the miniaturisation of wave-based devices. Here, the authors present a magnonic Fabry-Pérot resonator allowing for nanoscale and reconfigurable manipulation of spin waves.