Continuously controllable dissipative and coherent couplings by the interaction between anti-resonance and multiple magnons

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Main Authors: Hao, Zhenhui, Yao, Yuping, An, Kang, Li, Xiling, Zhang, Chi, Chai, Guozhi
Format: Preprint
Published: 2025
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author Hao, Zhenhui
Yao, Yuping
An, Kang
Li, Xiling
Zhang, Chi
Chai, Guozhi
author_facet Hao, Zhenhui
Yao, Yuping
An, Kang
Li, Xiling
Zhang, Chi
Chai, Guozhi
contents Weexperimentally realize the continuously controllable dissipative coupling and coherent coupling induced by different magnon modes and the same anti-resonance. It has been observed that the weaker the microwave magnetic field distribution of the magnon mode in magnetic materials, the more likely dissipative coupling is to occur. Conversely, stronger magnetic field distributions favor coherent coupling. Based on this principle, we have designed and implemented a system that alternates between dissipative and coherent coupling regimes. It allows microwave signals to be selectively transmitted over a large applied magnetic field range at the frequency of anti-resonance. Our experimental achievements may promote the construction of new magnonics devices like magnetic-tuning switch.
format Preprint
id arxiv_https___arxiv_org_abs_2501_13140
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Continuously controllable dissipative and coherent couplings by the interaction between anti-resonance and multiple magnons
Hao, Zhenhui
Yao, Yuping
An, Kang
Li, Xiling
Zhang, Chi
Chai, Guozhi
Mesoscale and Nanoscale Physics
Weexperimentally realize the continuously controllable dissipative coupling and coherent coupling induced by different magnon modes and the same anti-resonance. It has been observed that the weaker the microwave magnetic field distribution of the magnon mode in magnetic materials, the more likely dissipative coupling is to occur. Conversely, stronger magnetic field distributions favor coherent coupling. Based on this principle, we have designed and implemented a system that alternates between dissipative and coherent coupling regimes. It allows microwave signals to be selectively transmitted over a large applied magnetic field range at the frequency of anti-resonance. Our experimental achievements may promote the construction of new magnonics devices like magnetic-tuning switch.
title Continuously controllable dissipative and coherent couplings by the interaction between anti-resonance and multiple magnons
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2501.13140