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Fundamental limits of repeaterless quantum communications

机译:无中继器量子通信的基本限制

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摘要

Quantum communications promises reliable transmission of quantum information, efficient distribution of entanglement and generation of completely secure keys. For all these tasks, we need to determine the optimal point-to-point rates that are achievable by two remote parties at the ends of a quantum channel, without restrictions on their local operations and classical communication, which can be unlimited and two-way. These two-way assisted capacities represent the ultimate rates that are reachable without quantum repeaters. Here, by constructing an upper bound based on the relative entropy of entanglement and devising a dimension-independent technique dubbed ‘teleportation stretching', we establish these capacities for many fundamental channels, namely bosonic lossy channels, quantum-limited amplifiers, dephasing and erasure channels in arbitrary dimension. In particular, we exactly determine the fundamental rate-loss tradeoff affecting any protocol of quantum key distribution. Our findings set the limits of point-to-point quantum communications and provide precise and general benchmarks for quantum repeaters.
机译:量子通信保证了量子信息的可靠传输,纠缠的有效分布以及完全安全密钥的生成。对于所有这些任务,我们需要确定在量子通道末端由两个远程方可实现的最佳点对点速率,而不受其本地操作和经典通信的限制,这可以是无限的和双向的。这些双向辅助功能代表了没有量子中继器时可以达到的极限速率。在这里,通过基于纠缠的相对熵构造一个上限,并设计出一种与尺寸无关的技术,称为“传送延伸”,我们为许多基本通道(即,玻色子有损通道,量子受限放大器,移相和擦除通道)建立了这些容量在任意维度上。特别是,我们精确地确定了影响任何量子密钥分配协议的基本速率损失折衷方案。我们的发现确定了点对点量子通信的极限,并为量子中继器提供了精确的通用基准。

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