Resonance-enhanced Floquet cavity electromagnonics

Fuente: arXiv
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Main Authors: Pishehvar, Amin, Yan, Zixin, Wang, Zhaoyou, Jiang, Yu, Huang, Yizhong, Jornet, Josep M., Jiang, Liang, Zhang, Xufeng
Format: Preprint
Published: 2025
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author Pishehvar, Amin
Yan, Zixin
Wang, Zhaoyou
Jiang, Yu
Huang, Yizhong
Jornet, Josep M.
Jiang, Liang
Zhang, Xufeng
author_facet Pishehvar, Amin
Yan, Zixin
Wang, Zhaoyou
Jiang, Yu
Huang, Yizhong
Jornet, Josep M.
Jiang, Liang
Zhang, Xufeng
contents Floquet engineering has been recently recognized as an important tool for manipulating the coherent magnon-photon interaction in cavity electromagnonics systems at microwave frequencies. In spite of the novel hybrid magnonic functionalities that have been demonstrated, the effect of the Floquet drive has been relatively weak due to the limited driving efficiency, limiting its broader application. This work shows that by utilizing LC resonances, the Floquet drive in our cavity electromagnonic device can be drastically enhanced, giving rise to drastically boosted interaction between hybrid modes with fundamentally different spectral characteristics compared with previous demonstrations. In addition, the Floquet drives can also be obtained from GHz signals on such a system, allowing the demonstration of more advanced signal operations. Our novel resonance-enhanced Floquet cavity electromagnonics points to a new direction to fully unleash the potential of Floquet hybrid magnonics.
format Preprint
id arxiv_https___arxiv_org_abs_2505_17489
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Resonance-enhanced Floquet cavity electromagnonics
Pishehvar, Amin
Yan, Zixin
Wang, Zhaoyou
Jiang, Yu
Huang, Yizhong
Jornet, Josep M.
Jiang, Liang
Zhang, Xufeng
Mesoscale and Nanoscale Physics
Floquet engineering has been recently recognized as an important tool for manipulating the coherent magnon-photon interaction in cavity electromagnonics systems at microwave frequencies. In spite of the novel hybrid magnonic functionalities that have been demonstrated, the effect of the Floquet drive has been relatively weak due to the limited driving efficiency, limiting its broader application. This work shows that by utilizing LC resonances, the Floquet drive in our cavity electromagnonic device can be drastically enhanced, giving rise to drastically boosted interaction between hybrid modes with fundamentally different spectral characteristics compared with previous demonstrations. In addition, the Floquet drives can also be obtained from GHz signals on such a system, allowing the demonstration of more advanced signal operations. Our novel resonance-enhanced Floquet cavity electromagnonics points to a new direction to fully unleash the potential of Floquet hybrid magnonics.
title Resonance-enhanced Floquet cavity electromagnonics
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2505.17489