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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Autores principales: Huajun Qin, Rasmus B. Holländer, Lukáš Flajšman, Felix Hermann, Rouven Dreyer, Georg Woltersdorf, Sebastiaan van Dijken
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/28f4d088a5da4ffcae96bfd8734f408b
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spelling oai:doaj.org-article:28f4d088a5da4ffcae96bfd8734f408b2021-12-02T15:51:07ZNanoscale magnonic Fabry-Pérot resonator for low-loss spin-wave manipulation10.1038/s41467-021-22520-62041-1723https://doaj.org/article/28f4d088a5da4ffcae96bfd8734f408b2021-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-22520-6https://doaj.org/toc/2041-1723Compared 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.Huajun QinRasmus B. HolländerLukáš FlajšmanFelix HermannRouven DreyerGeorg WoltersdorfSebastiaan van DijkenNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-10 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Huajun Qin
Rasmus B. Holländer
Lukáš Flajšman
Felix Hermann
Rouven Dreyer
Georg Woltersdorf
Sebastiaan van Dijken
Nanoscale magnonic Fabry-Pérot resonator for low-loss spin-wave manipulation
description 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.
format article
author Huajun Qin
Rasmus B. Holländer
Lukáš Flajšman
Felix Hermann
Rouven Dreyer
Georg Woltersdorf
Sebastiaan van Dijken
author_facet Huajun Qin
Rasmus B. Holländer
Lukáš Flajšman
Felix Hermann
Rouven Dreyer
Georg Woltersdorf
Sebastiaan van Dijken
author_sort Huajun Qin
title Nanoscale magnonic Fabry-Pérot resonator for low-loss spin-wave manipulation
title_short Nanoscale magnonic Fabry-Pérot resonator for low-loss spin-wave manipulation
title_full Nanoscale magnonic Fabry-Pérot resonator for low-loss spin-wave manipulation
title_fullStr Nanoscale magnonic Fabry-Pérot resonator for low-loss spin-wave manipulation
title_full_unstemmed Nanoscale magnonic Fabry-Pérot resonator for low-loss spin-wave manipulation
title_sort nanoscale magnonic fabry-pérot resonator for low-loss spin-wave manipulation
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/28f4d088a5da4ffcae96bfd8734f408b
work_keys_str_mv AT huajunqin nanoscalemagnonicfabryperotresonatorforlowlossspinwavemanipulation
AT rasmusbhollander nanoscalemagnonicfabryperotresonatorforlowlossspinwavemanipulation
AT lukasflajsman nanoscalemagnonicfabryperotresonatorforlowlossspinwavemanipulation
AT felixhermann nanoscalemagnonicfabryperotresonatorforlowlossspinwavemanipulation
AT rouvendreyer nanoscalemagnonicfabryperotresonatorforlowlossspinwavemanipulation
AT georgwoltersdorf nanoscalemagnonicfabryperotresonatorforlowlossspinwavemanipulation
AT sebastiaanvandijken nanoscalemagnonicfabryperotresonatorforlowlossspinwavemanipulation
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