量子网络基础设施

IF 4.4 Q1 OPTICS
Lisa Wörner, Kai Bongs, Stefanie Bremer, Philipp Kleinpaß, Florian Moll, Davide Orsucci, Jaspar Meister, Jan-Michael Mol
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引用次数: 0

摘要

全局量子态分布在许多领域都有应用,其中之一就是在量子计算威胁的时代,为安全通信提供全局密钥分布。远距离量子密钥分发需要一个由光中继站、地面站和量子存储器组成的全球网络。在本研究中,提出了为什么量子存储器应该在空间中作为不可信节点运行。除了量子密钥分发之外,空间量子存储器是分布式量子传感器系统的使能技术。概述了分布式传感器的要求,并参考了当前相关系统的技术就绪水平。最后,讨论了新兴量子互联网的可能性,使世界各地的量子计算机能够进行相干组合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Quantum Network Infrastructure

Quantum Network Infrastructure

Global quantum state distribution has applications in many areas, one of which is global key distribution for secure communications in an era of the threat of quantum computing. Long-distance quantum key distribution requires a global network of optical relay stations, ground stations, and quantum memories. In this study, why quantum memories should be operated in space as untrusted nodes is presented. In addition to quantum key distribution, quantum memories in space are an enabling technology for distributed quantum sensor systems. The requirements for distributed sensors are outlined and the current technology readiness level of relevant systems is referenced. Finally, the possibility of an emerging quantum internet, enabling the coherent combination of quantum computers around the world, is addressed.

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CiteScore
7.90
自引率
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