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Heralded two-photon entanglement from probabilistic quantum logic operations on multiple parametric down-conversion sources

机译:从概率量子逻辑操作对多个参数下转换源的概率量子逻辑操作的预示下的两光子纠缠

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摘要

An ideal controlled-NOT gate followed by projective measurements can be used to identify specific Bell states of its two input qubits. When the input qubits are each members of independent Bell states, these projective measurements can be used to swap the post-selected entanglement onto the remaining two qubits. Here we apply this strategy to produce heralded two-photon polarization entanglement using Bell states that originate from independent parametric down-conversion sources, and a particular probabilistic controlled-NOT gate that is constructed from linear optical elements. The resulting implementation is closely related to an earlier proposal by Sliwa and Banaszek, and can be intuitively understood in terms of familiar quantum information protocols. The possibility of producing a "pseudo-demand" source of two-photon entanglement by storing and releasing these heralded pairs from independent cyclical quantum memory devices is also discussed.
机译:可用于投影测量的理想控制不门,可用于识别其两个输入Qubits的特定钟声状态。当输入Qubits是独立贝尔状态的每个成员时,这些投影测量可用于将所选择的纠缠交换到剩余的两个Qubits上。在这里,我们应用这种策略来使用来自独立的参数下转换源的贝尔状态,以及由线性光学元件构成的特定概率控制 - 非栅极的贝尔状态。由此产生的实现与SLIWA和Banaszek的早期提案密切相关,并且可以在熟悉的量子信息协议方面直观地理解。还讨论了通过存储和释放从独立的周期性的循环量子存储器件来制造双光子缠结的“伪需求”来源的可能性。

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