论文标题

汇总量子网络

Aggregating Quantum Networks

论文作者

Piparo, Nicolo Lo, Hanks, Michael, Nemoto, Kae, Munro, William J.

论文摘要

量子网络允许以古典世界不可用的方式传输信息。现在可以在不同路线上以连贯的方式将单个信息的单个信息分组和传输。该聚合允许在量子网络的不同部分(或将来的互联网)之间以错误耐受的方式传输信息 - 即使使用单个路径方法无法实现。它也是常规电信网络中无法使用的量子现象。我们展示了独立量子通道的多路复用方式允许量子误差校正的分布式形式,以保护节点或量子网络用户之间量子信息的传输。结合时空单光子多路复用,我们观察到传输该量子信号所需的网络资源大幅下降 - 即使仅涉及两个通道。这项工作远远超出了渠道能力的概念,并显示了量子网络将来如何运作。此外,它表明量子网络可能与它们的经典同行不同,这是一个重要的区别,因为我们设计了更大的规模。

Quantum networking allows the transmission of information in ways unavailable in the classical world. Single packets of information can now be split and transmitted in a coherent way over different routes. This aggregation allows information to be transmitted in a fault tolerant way between different parts of the quantum network (or the future internet) - even when that is not achievable with a single path approach. It is a quantum phenomenon not available in conventional telecommunication networks either. We show how the multiplexing of independent quantum channels allows a distributed form of quantum error correction to protect the transmission of quantum information between nodes or users of a quantum network. Combined with spatial-temporal single photon multiplexing we observe a significant drop in network resources required to transmit that quantum signal - even when only two channels are involved. This work goes far beyond the concepts of channel capacities and shows how quantum networking may operate in the future. Further it shows that quantum networks are likely to operate differently from their classical counterparts which is an important distinction as we design larger scale ones.

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