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Single-photon all-optical switching using waveguide-cavity quantum electrodynamics

机译:利用波导腔量子电动力学的单光子全光开关

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This paper demonstrates switching of a single signal photon by a single gating photon of a different frequency, via a cross-phase-modulation. This effect is mediated by materials exhibiting electromagnetically induced transparency (EIT), which are embedded in photonic crystals (PhCs). An analytical model based on waveguide-cavity QED is constructed for our system, which consists of a PhC waveguide and a PhC microcavity containing a four-level EIT atom. It is solved exactly and analyzed using experimentally accessible parameters. It is found that the strong coupling regime is required for lossless two-photon quantum entanglement.
机译:本文演示了通过交叉相位调制,通过不同频率的单个选通光子切换单个信号光子。这种效应是由表现出电磁感应透明性(EIT)的材料介导的,这些材料嵌入光子晶体(PhCs)中。为我们的系统构建了基于波导腔QED的分析模型,该模型由PhC波导和包含四能级EIT原子的PhC微腔组成。使用实验可访问的参数对其进行精确求解和分析。发现无损两光子量子纠缠需要强耦合机制。

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