Anomalous Long-Distance Coherence in Critically Driven Cavity Magnonics
ORAL
Abstract
Developing quantum networks necessitates coherently connecting distant systems via remote strong coupling. Here, we demonstrate long-distance coherence in cavity magnonics operating in the linear regime. By locally setting the cavity near critical coupling with traveling photons, nonlocal magnon-photon coherence is established via strong coupling over a 2-m distance. We observe two anomalies in this long-distance coherence: first, the coupling strength oscillates twice the period of conventional photon-mediated couplings; second, clear mode splitting is observed within the cavity linewidth. Both effects cannot be explained by conventional coupled-mode theory, which reveals the tip of an iceberg of photon-mediated coupling in systems under critical driving. Our Letter shows the potential of using critical phenomena for harnessing long-distance coherence in distributed systems.
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Publication: Yang Y, Yao J, Xiao Y, et al. Anomalous Long-Distance Coherence in Critically Driven Cavity Magnonics[J]. Physical Review Letters, 2024, 132(20): 206902.
Presenters
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Ying Yang
Cornell University
Authors
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Ying Yang
Cornell University
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Jiguang Yao
University of Manitoba
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Yang Xiao
Nanjing University of Aeronautics and Astronautics
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Pak-Tik Fong
Simon Fraser University
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Hoi-Kwan (Kero) Lau
Simon Fraser University, Burnaby, Simon Fraser University
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Can-Ming Hu
University of Manitoba