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Deterministically swapping frequency-bin entanglement from photon-photon to atom-photon hybrid systems

机译:从光子 - 光子到原子 - 光子混合系统的确定性地交换频率箱缠结

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Inspired by the recent developments of the research on the atom-photon quantum interface and energy-time entanglement between single-photon pulses, we are motivated to study the deterministic protocol for the frequency-bin entanglement of the atom-photon hybrid system, which is analogous to the frequency-bin entanglement between single-photon pulses. We show that such entanglement arises naturally in considering the interaction between a frequency-bin entangled single-photon pulse pair and a single atom coupled to an optical cavity, via straightforward atom-photon phase gate operations. Its anticipated properties and preliminary examples of its potential application in quantum networking are also demonstrated. Moreover, we construct a specific quantum entanglementwitness tool to detect such extended frequency-bin entanglement from a reasonably general set of separable states, and prove its capability theoretically.We focus on the energy-time considerations throughout the analysis.
机译:灵感来自最近关于对原子光子量子界面和单光子脉冲之间的节能缠结的研究的启发,我们有动力研究原子 - 光子混合系统的频率-BIN缠结的确定性方案,这是 类似于单光子脉冲之间的频率-bin纠缠。 我们表明,在考虑频率-BIN缠结的单光子脉冲对和耦合到光学腔的单个原子之间的相互作用,通过直接原子 - 光子相位栅极操作来自然地产生这种缠结。 还证明了其预期的性质和初步例子在量子网络中的潜在应用。 此外,我们构建了特定的量子纠缠选择工具,可以从一个合理的一般可分离状态检测这种扩展的频率-Bin纠缠,从理论上证明其能力。我们专注于整个分析过程中的节能考虑因素。

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