Hybrid magnon-phonon crystals

Abstract Magnons and phonons are engineered in artificial lattices with tunable modes and band dispersions. Recent advance in magnon-phonon coupling shined a light on combining magnonic and phononic crystals as hybrid magnon-phonon crystals, benefit from the tunable magnon-phonon coupling, the time-...

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Main Authors: Liyang Liao, Jiacheng Liu, Jorge Puebla, Qiming Shao, Yoshichika Otani
Format: Article
Language:English
Published: Nature Portfolio 2024-09-01
Series:npj Spintronics
Online Access:https://doi.org/10.1038/s44306-024-00052-1
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author Liyang Liao
Jiacheng Liu
Jorge Puebla
Qiming Shao
Yoshichika Otani
author_facet Liyang Liao
Jiacheng Liu
Jorge Puebla
Qiming Shao
Yoshichika Otani
author_sort Liyang Liao
collection DOAJ
description Abstract Magnons and phonons are engineered in artificial lattices with tunable modes and band dispersions. Recent advance in magnon-phonon coupling shined a light on combining magnonic and phononic crystals as hybrid magnon-phonon crystals, benefit from the tunable magnon-phonon coupling, the time-reversal symmetry breaking of magnons, and the long lifetime of phonons. This perspective summarizes lattice-based mutual control of magnons and phonons, and proposes the opportunities provided by the hybrid magnon-phonon crystals.
format Article
id doaj-art-739520bfb13d4d7dabe0afb4b49a7377
institution DOAJ
issn 2948-2119
language English
publishDate 2024-09-01
publisher Nature Portfolio
record_format Article
series npj Spintronics
spelling doaj-art-739520bfb13d4d7dabe0afb4b49a73772025-08-20T02:59:23ZengNature Portfolionpj Spintronics2948-21192024-09-01211610.1038/s44306-024-00052-1Hybrid magnon-phonon crystalsLiyang Liao0Jiacheng Liu1Jorge Puebla2Qiming Shao3Yoshichika Otani4Institute for Solid State Physics, University of TokyoDepartment of Electronic and Computer Engineering, The Hong Kong University of Science and TechnologyCenter for Emergent Matter Science, RIKENDepartment of Electronic and Computer Engineering, The Hong Kong University of Science and TechnologyInstitute for Solid State Physics, University of TokyoAbstract Magnons and phonons are engineered in artificial lattices with tunable modes and band dispersions. Recent advance in magnon-phonon coupling shined a light on combining magnonic and phononic crystals as hybrid magnon-phonon crystals, benefit from the tunable magnon-phonon coupling, the time-reversal symmetry breaking of magnons, and the long lifetime of phonons. This perspective summarizes lattice-based mutual control of magnons and phonons, and proposes the opportunities provided by the hybrid magnon-phonon crystals.https://doi.org/10.1038/s44306-024-00052-1
spellingShingle Liyang Liao
Jiacheng Liu
Jorge Puebla
Qiming Shao
Yoshichika Otani
Hybrid magnon-phonon crystals
npj Spintronics
title Hybrid magnon-phonon crystals
title_full Hybrid magnon-phonon crystals
title_fullStr Hybrid magnon-phonon crystals
title_full_unstemmed Hybrid magnon-phonon crystals
title_short Hybrid magnon-phonon crystals
title_sort hybrid magnon phonon crystals
url https://doi.org/10.1038/s44306-024-00052-1
work_keys_str_mv AT liyangliao hybridmagnonphononcrystals
AT jiachengliu hybridmagnonphononcrystals
AT jorgepuebla hybridmagnonphononcrystals
AT qimingshao hybridmagnonphononcrystals
AT yoshichikaotani hybridmagnonphononcrystals