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模式复用深度强光与物质耦合

Mode-multiplexing deep-strong light-matter coupling.

作者信息

Mornhinweg Joshua, Diebel Laura Katharina, Halbhuber Maike, Prager Michael, Riepl Josef, Inzenhofer Tobias, Bougeard Dominique, Huber Rupert, Lange Christoph

机构信息

Department of Physics, University of Regensburg, 93040, Regensburg, Germany.

Department of Physics, TU Dortmund University, 44227, Dortmund, Germany.

出版信息

Nat Commun. 2024 Feb 28;15(1):1847. doi: 10.1038/s41467-024-46038-9.

Abstract

Dressing electronic quantum states with virtual photons creates exotic effects ranging from vacuum-field modified transport to polaritonic chemistry, and squeezing or entanglement of modes. The established paradigm of cavity quantum electrodynamics maximizes the light-matter coupling strength , defined as the ratio of the vacuum Rabi frequency and the frequency of light, by resonant interactions. Yet, the finite oscillator strength of a single electronic excitation sets a natural limit to . Here, we enter a regime of record-strong light-matter interaction which exploits the cooperative dipole moments of multiple, highly non-resonant magnetoplasmon modes tailored by our metasurface. This creates an ultrabroadband spectrum of 20 polaritons spanning 6 optical octaves, calculated vacuum ground state populations exceeding 1 virtual excitation quantum, and coupling strengths equivalent to . The extreme interaction drives strongly subcycle energy exchange between multiple bosonic vacuum modes akin to high-order nonlinearities, and entangles previously orthogonal electronic excitations solely via vacuum fluctuations.

摘要

用虚光子修饰电子量子态会产生各种奇异效应,从真空场修正的输运到极化子化学,以及模式的压缩或纠缠。腔量子电动力学的既定范式通过共振相互作用使光与物质的耦合强度(定义为真空拉比频率与光频率之比)最大化。然而,单个电子激发的有限振子强度给耦合强度设定了自然限制。在此,我们进入了一个创纪录的强光与物质相互作用 regime,该 regime 利用了由我们的超表面定制的多个高度非共振磁等离子体模式的协同偶极矩。这产生了一个跨越 6 个光学倍频程的 20 个极化子的超宽带光谱,计算得出的真空基态布居数超过 1 个虚激发量子,且耦合强度等同于……。这种极端相互作用驱动多个玻色子真空模式之间发生强烈的亚周期能量交换,类似于高阶非线性,并仅通过真空涨落使先前正交的电子激发纠缠在一起。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3cd/10901777/1c15477ec3ee/41467_2024_46038_Fig1_HTML.jpg

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