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单量子位的量子时钟同步

Quantum clock synchronization with a single qudit.

作者信息

Tavakoli Armin, Cabello Adán, Żukowski Marek, Bourennane Mohamed

机构信息

Physics Department, Stockholm University, S-10691, Stockholm, Sweden.

Departamento de Física Aplicada II, Universidad de Sevilla, E-41012 Sevilla, Spain.

出版信息

Sci Rep. 2015 Jan 23;5:7982. doi: 10.1038/srep07982.

Abstract

Clock synchronization for nonfaulty processes in multiprocess networks is indispensable for a variety of technologies. A reliable system must be able to resynchronize the nonfaulty processes upon some components failing causing the distribution of incorrect or conflicting information in the network. The task of synchronizing such networks is related to Byzantine agreement (BA), which can classically be solved using recursive algorithms if and only if less than one-third of the processes are faulty. Here we introduce a nonrecursive quantum algorithm, based on a quantum solution of the detectable BA, which achieves clock synchronization in the presence of arbitrary many faulty processes by using only a single quantum system.

摘要

多进程网络中无故障进程的时钟同步对于多种技术而言不可或缺。一个可靠的系统必须能够在某些组件发生故障导致网络中出现不正确或冲突信息分布时,对无故障进程重新进行同步。同步此类网络的任务与拜占庭一致性(BA)相关,经典地,当且仅当故障进程少于三分之一时,可使用递归算法解决该问题。在此,我们基于可检测拜占庭一致性的量子解决方案引入一种非递归量子算法,该算法仅使用单个量子系统,就能在存在任意多个故障进程的情况下实现时钟同步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8108/4303899/a62152e07df7/srep07982-f1.jpg

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