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Photon Devil’s staircase: photon long-range repulsive interaction in lattices of coupled resonators with Rydberg atoms

机译:光子魔鬼的阶梯:具有里德堡原子的耦合谐振器的晶格中的光子远程排斥相互作用

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摘要

The realization of strong coherent interactions between individual photons is a long-standing goal in science and engineering. In this report, based on recent experimental setups, we derive a strong photon long-range repulsive interaction, by controlling the van der Waals repulsive force between Cesium Rydberg atoms located inside different cavities in extended Jaynes-Cummings-Hubbard lattices. We also find novel quantum phases induced by this photon long-range repulsive interaction. For example, without photon hopping, a photon Devil’s staircase, induced by the breaking of long-range translation symmetry, can emerge. If photon hopping occurs, we predict a photon-floating solid phase, due to the motion of particle- and hole-like defects. More importantly, for a large chemical potential in the resonant case, the photon hopping can be frozen even if the hopping term exists. We call this new phase the photon-frozen solid phase. In experiments, these predicted phases could be detected by measuring the number of polaritons via resonance fluorescence.
机译:在单个光子之间实现强相干相互作用是科学和工程学的长期目标。在这份报告中,基于最近的实验装置,我们通过控制位于扩展的Jaynes-Cummings-Hubbard晶格中不同腔内的铯铯里德堡原子之间的范德华排斥力,得出了很强的光子远程排斥相互作用。我们还发现了由该光子远程排斥相互作用引起的新型量子相。例如,在没有光子跳跃的情况下,由远程平移对称性的破坏引起的光子魔鬼阶梯会出现。如果发生光子跳跃,由于粒子状和孔状缺陷的运动,我们可以预测出光子浮动固相。更重要的是,对于共振情况下的较大化学势,即使存在跳变项,也可以冻结光子跳变。我们将此新相称为光子冷冻固相。在实验中,这些预测的相位可以通过共振荧光测量极化子的数量来检测。

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