The Quantum Dynamics of Two Coupled Cavities Containing Pumped Atomic Ensembles

IF 1.8 4区 物理与天体物理 Q4 PHYSICS, CONDENSED MATTER
S. Cârlig, V. Ciornea, C. Gherman, M. A. Macovei
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Abstract

We investigate a hybrid quantum system consisting of two coupled optical cavities, each containing an ensemble of coherently pumped artificial or real two-level atoms. The system is modelled within the dressed-state formalism, accounting for coherent driving and dissipative interactions with independent electromagnetic reservoirs. Focusing on the regime where the Rabi frequency greatly exceeds the collective spontaneous emission and cavity decay rates, respectively, we derive the equations of motion characterizing the system and analyse its steady-state behaviours. Special attention is given to the scenario in which only one cavity contains a pumped multi-atom ensemble, and as a consequence, coherent excitation transfer to the second cavity occurs via cavity–cavity coupling. In this case, the mean photon number in the second cavity mode scales proportional to the squared number of atoms, i.e., N2 from the first cavity. The proposed model offers insight into light–matter interaction in composite systems and suggests viable mechanisms for engineering collective interactions and non-local excitation transport in quantum optical platforms.

Abstract Image

包含泵浦原子系综的两个耦合腔的量子动力学
我们研究了一个由两个耦合光学腔组成的混合量子系统,每个光学腔都包含相干泵浦的人工或真实两能级原子的系综。该系统在盛装态形式下建模,考虑了相干驱动和与独立电磁储层的耗散相互作用。针对拉比频率大大超过集体自发发射率和腔衰减率的情况,推导了表征系统的运动方程,并分析了其稳态行为。特别注意的情况下,其中只有一个腔包含泵浦的多原子系综,作为结果,相干激发转移到第二个腔通过腔腔耦合发生。在这种情况下,第二腔模式中的平均光子数与原子数的平方成正比,即来自第一腔的N2。所提出的模型提供了对复合系统中光-物质相互作用的见解,并为量子光学平台中工程集体相互作用和非局部激发输运提供了可行的机制。
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来源期刊
Physics of the Solid State
Physics of the Solid State 物理-物理:凝聚态物理
CiteScore
1.70
自引率
0.00%
发文量
60
审稿时长
2-4 weeks
期刊介绍: Presents the latest results from Russia’s leading researchers in condensed matter physics at the Russian Academy of Sciences and other prestigious institutions. Covers all areas of solid state physics including solid state optics, solid state acoustics, electronic and vibrational spectra, phase transitions, ferroelectricity, magnetism, and superconductivity. Also presents review papers on the most important problems in solid state physics.
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