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实验性即插即用量子硬币翻转。

Experimental plug and play quantum coin flipping.

机构信息

1] LTCI, CNRS-Télécom ParisTech, 23, avenue d'Italie, Paris 75013, France [2] LIAFA, CNRS-Université Paris Diderot 7, Sophie Germain Building, 75205 Paris Cedex 13, France.

1] LTCI, CNRS-Télécom ParisTech, 23, avenue d'Italie, Paris 75013, France [2] SeQureNet, 23, avenue d'Italie, Paris 75013, France.

出版信息

Nat Commun. 2014 Apr 24;5:3717. doi: 10.1038/ncomms4717.

Abstract

Performing complex cryptographic tasks will be an essential element in future quantum communication networks. These tasks are based on a handful of fundamental primitives, such as coin flipping, where two distrustful parties wish to agree on a randomly generated bit. Although it is known that quantum versions of these primitives can offer information-theoretic security advantages with respect to classical protocols, a demonstration of such an advantage in a practical communication scenario has remained elusive. Here we experimentally implement a quantum coin flipping protocol that performs strictly better than classically possible over a distance suitable for communication over metropolitan area optical networks. The implementation is based on a practical plug and play system, developed by significantly enhancing a commercial quantum key distribution device. Moreover, we provide combined quantum coin flipping protocols that are almost perfectly secure against bounded adversaries. Our results offer a useful toolbox for future secure quantum communications.

摘要

执行复杂的密码学任务将是未来量子通信网络的一个基本要素。这些任务基于少数几个基本原语,例如掷硬币,两个不信任的方希望就随机生成的位达成一致。尽管已知这些原语的量子版本相对于经典协议具有信息论安全性优势,但在实际通信场景中证明这种优势一直难以实现。在这里,我们通过实验实现了一种量子掷硬币协议,该协议在适合城域光网络通信的距离上,性能严格优于经典协议。该实现基于一个实用的即插即用系统,该系统是通过显著增强商业量子密钥分发设备而开发的。此外,我们还提供了组合量子掷硬币协议,这些协议几乎可以完全抵御有界对手的攻击。我们的结果为未来的安全量子通信提供了一个有用的工具包。

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