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Strong Coupling of Two Individually Controlled Atoms via a Nanophotonic Cavity

机译:通过纳米光子腔强耦合两个独立控制的原子。

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We demonstrate photon-mediated interactions between two individually trapped atoms coupled to a nanophotonic cavity. Specifically, we observe collective enhancement when the atoms are resonant with the cavity and level repulsion when the cavity is coupled to the atoms in the dispersive regime. Our approach makes use of individual control over the internal states of the atoms and their position with respect to the cavity mode, as well as the light shifts to tune atomic transitions individually, allowing us to directly observe the anticrossing of the bright and dark two-atom states. These observations open the door for realizing quantum networks and studying quantum many-body physics based on atom arrays coupled to nanophotonic devices.
机译:我们证明耦合到一个纳米光子腔的两个单独捕获的原子之间的光子介导的相互作用。具体而言,当原子与腔共振时,我们观察到集体增强;当腔与色散体系中的原子耦合时,我们观察到水平排斥。我们的方法利用对原子的内部状态及其相对于腔模的位置的单独控制,以及光的移动来分别调整原子的跃迁,从而使我们能够直接观察明暗两点的反交叉。原子状态。这些发现为实现量子网络和研究基于与纳米光子器件耦合的原子阵列的量子多体物理学打开了大门。

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