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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Single photon transfer controlled by excitation phase in a two-atom cavity system
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Single photon transfer controlled by excitation phase in a two-atom cavity system

机译:由两个原子腔系统中的激发相控制的单光子传递

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We investigate the quantum interference effect of single photon transfer in a two-atom cavity system caused by the excitation phase. In the proposed system, the two identical atoms are firstly put into a timed state by an external single photon field. During the excitation, the atoms grasp different phases which depend on the spatial position of the atoms. Due to the strong resonant interaction between the atoms and optical cavity mode, the absorbed input photon can be efficiently transferred from the atoms to the cavity mode. We show that photon transfer is sensitive to the quantum interference caused by the excitation phases of atoms. The atomic positions can also determine the coupling constants between the atoms and cavity mode as well as the interatomic dipole-dipole interaction which causes additional interference effects on the quantum transfer. Based on the characteristics of the excitation phase, we find that it is a feasible scheme to generate a long-lived dark state and it could be useful for storage and manipulation of single photon fields by controlling the excitation phase.
机译:我们研究了由激发阶段引起的双原子腔系统中单光子转移的量子干扰效应。在所提出的系统中,将两个相同的原子首先通过外部单光子场投入定时状态。在激发过程中,原子抓住不同的相位,这取决于原子的空间位置。由于原子和光学腔模式之间的强谐振相互作用,吸收的输入光子可以从原子上有效地从原子转移到腔模式。我们表明光子转移对由原子激发阶段引起的量子干扰敏感。原子位置还可以确定原子和腔模式之间的耦合常数以及导致对量子转移的额外干扰效应的耦合常数。基于激励阶段的特征,我们发现它是产生长期暗状态的可行方案,可以通过控制激励阶段来存储和操纵单个光子场。

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