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Dipolar exchange induced transparency with Rydberg atoms

机译:偶极交换引起里德堡原子的透明

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A three-level atomic medium can be made transparent to a resonant probe field in the presence of a strong control field acting on an adjacent atomic transition to a long-lived state, which can be represented by a highly excited Rydberg state. The long-range interactions between the Rydberg state atoms then translate into strong, non-local, dispersive or absorptive interactions between the probe photons, which can be used to achieve deterministic quantum logic gates and single photon sources. Here we show that long-range dipole–dipole exchange interaction with one or more spins—two-level systems represented by atoms in suitable Rydberg states—can play the role of control field for the optically dense medium of atoms. This induces transparency of the medium for a number of probe photons n p not exceeding the number of spins n s , while all the excess photons are resonantly absorbed upon propagation. In the most practical case of a single spin atom prepared in the Rydberg state, the medium is thus transparent only to a single input probe photon. For larger number of spins n s , all n p ?≤?n s photon components of the probe field would experience transparency but with an n p -dependent group velocity.
机译:在作用于相邻原子跃迁到长寿命状态的强控制场的情况下,可以使三能级原子介质对共振探针场透明,这可以用高度激发的里德堡态表示。然后,里德堡状态原子之间的远程相互作用转化为探针光子之间的强,非局部,色散或吸收相互作用,可用于实现确定性量子逻辑门和单个光子源。在这里,我们表明,与一个或多个自旋(以适当的里德堡态的原子表示的两级体系)的长距离偶极-偶极交换相互作用,可以对原子的光密介质起到控制场的作用。这引起了对于不超过自旋数ns的多个探针光子n p的介质的透明性,而所有过量的光子在传播时被共振吸收。因此,在最实际的情况下,以里德堡状态制备的单个自旋原子,介质仅对单个输入探针光子透明。对于更大数量的自旋n s,探测场的所有n p?≤?n s光子分量将经历透明性,但依赖于n p的群速度。

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