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Coherent generation of EPR-entangled light pulses mediated by a single trapped atom

机译:由单个俘获原子介导的EPR纠缠光脉冲的相干生成

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摘要

We show that a single, trapped, laser-driven atom in a high-finesse optical cavity allows for the quantum-coherent generation of entangled light pulses on demand. We report the detailed description of schemes for generating simultaneous and temporally separated pulse pairs, presented in [G. Morigi , Phys. Rev. Lett., 96, 023601 (2006)]. The mechanical effect of the laser excitation on the quantum motion of the cold trapped atom mediates the entangling interaction between two cavity modes and between the two subsequent pulses, respectively. The entanglement is of EPR-type, and its degree can be controlled through external parameters. At the end of the generation process the atom is decorrelated from the light field. Possible experimental implementations of the proposals are discussed.
机译:我们显示出,高精细光学腔中的单个,被捕获的,激光驱动的原子可以按需生成纠缠光脉冲的量子相干生成。我们报告了用于生成同时发生和时间上分开的脉冲对的方案的详细说明,[G。莫里吉Rev. Lett。,96,023601(2006)]。激光激发对冷俘获原子的量子运动的机械作用分别介导了两个腔模之间以及两个后续脉冲之间的纠缠相互作用。纠缠是EPR型的,其程度可以通过外部参数来控制。在生成过程的最后,原子与光场解相关。讨论了建议的可能的实验实现。

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