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Linear-optical heralded amplification protocol for two-photon spatial-mode-polarization hyperentangled state

机译:用于双光子空间模式极化超纯状态的线性 - 光学雄肿扩增协议

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摘要

Hyperentanglement can enlarge the capacity of quantum channel and has big potential application in long-distance quantum communication. However, the channel noise may cause photon transmission loss, which largely limits the practical application of hyperentanglement. In the paper, we propose a linear-optical heralded amplification protocol for protecting the two-photon spatial-mode-polarization hyperentangled state. Our protocol can effectively increase the fidelity of the hyperentangled state while preserve its encoded spatial and polarization features. Comparing with previous heralded amplification protocol for the spatial-mode-polarization hyperentangled state, our protocol is easier to be implemented under current experimental condition. Moreover, besides amplification, if necessary, our protocol can adjust the entanglement coefficients in both polarization and spatial-mode degrees of freedom of the distilled hyperentangled state and recover the less-entangled hyperentangled state into the maximally entangled state. Based on above features, our protocol gives a possible solution to overcome the photon loss and decoherence problems occurred in practical noisy quantum channel condition.
机译:Hyperentanglement可以扩大量子通道的容量,并具有在长距离量子通信中具有大的潜在应用。然而,信道噪声可能导致光子传输损耗,这在很大程度上限制了Hyperentanglement的实际应用。在本文中,我们提出了一种用于保护双光子空间 - 偏振偏振超纯状态的线性 - 光学雄肿放大方案。我们的协议可以有效地提高HyperEntangled状态的保真度,同时保留其编码的空间和极化特征。与以前的预定扩增协议进行空间 - 偏振超纯状态,我们的协议在当前的实验条件下更易于实现。此外,除了放大器之外,如果需要,我们的协议可以调整蒸馏超纯状态的极化和空间模式自由度中的缠结系数,并将较少纠缠的Hyperangled状态恢复到最大缠结状态。基于上述特征,我们的协议提供了一种可能的解决方案来克服实际嘈杂量子通道状况发生的光子损耗和脱机问题。

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