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Aggregating quantum repeaters for the quantum internet

机译:为量子互联网聚集量子中继器

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The quantum internet holds promise for accomplishing quantum teleportation and unconditionally secure communication freely between arbitrary clients all over the globe, as well as the simulation of quantum many-body systems. For such a quantum internet protocol, a general fundamental upper bound on the obtainable entanglement or secret key has been derived [K. Azuma, A. Mizutani, and H.-K. Lo, Nat. Commun. 7, 13523 (2016)]. Here we consider its converse problem. In particular, we present a universal protocol constructible from any given quantum network, which is based on running quantum repeater schemes in parallel over the network. For arbitrary lossy optical channel networks, our protocol has no scaling gap with the upper bound, even based on existing quantum repeater schemes. In an asymptotic limit, our protocol works as an optimal entanglement or secret-key distribution over any quantum network composed of practical channels such as erasure channels, dephasing channels, bosonic quantum amplifier channels, and lossy optical channels.
机译:Quantum互联网拥有承担在全球各地的任意客户之间自由地完成量子传送和无条件安全通信,以及量子多体系统的模拟。对于这种量子互联网协议,已经派生了可获得的纠缠或秘密密钥的一般基本界限[K. Azuma,A. Mizutani和H. -K.罗,NAT。安排。 7,13523(2016)]。在这里,我们考虑其逆转问题。特别地,我们提出了一种来自任何给定量子网络的通用协议,其基于在网络上并行运行量子中继器方案。对于任意损耗光通道网络,即使基于现有量子中继器方案,我们的协议也没有具有上限的缩放间隙。在渐近极限中,我们的协议用作由任何由实用通道组成的量子网络的最佳纠缠或秘密密钥分布,例如擦除通道,脱离通道,振动量子放大器通道和有损光学通道。

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