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非局域玻色子采样中的量子关联

Quantum Correlations in Nonlocal Boson Sampling.

作者信息

Shahandeh Farid, Lund Austin P, Ralph Timothy C

机构信息

Centre for Quantum Computation and Communication Technology, School of Mathematics and Physics, University of Queensland, St Lucia, Queensland 4072, Australia.

出版信息

Phys Rev Lett. 2017 Sep 22;119(12):120502. doi: 10.1103/PhysRevLett.119.120502. Epub 2017 Sep 19.

Abstract

Determination of the quantum nature of correlations between two spatially separated systems plays a crucial role in quantum information science. Of particular interest is the questions of if and how these correlations enable quantum information protocols to be more powerful. Here, we report on a distributed quantum computation protocol in which the input and output quantum states are considered to be classically correlated in quantum informatics. Nevertheless, we show that the correlations between the outcomes of the measurements on the output state cannot be efficiently simulated using classical algorithms. Crucially, at the same time, local measurement outcomes can be efficiently simulated on classical computers. We show that the only known classicality criterion violated by the input and output states in our protocol is the one used in quantum optics, namely, phase-space nonclassicality. As a result, we argue that the global phase-space nonclassicality inherent within the output state of our protocol represents true quantum correlations.

摘要

确定两个空间分离系统之间关联的量子性质在量子信息科学中起着至关重要的作用。特别令人感兴趣的是这些关联是否以及如何使量子信息协议更强大的问题。在这里,我们报告一种分布式量子计算协议,在量子信息学中,其输入和输出量子态被认为是经典关联的。然而,我们表明,使用经典算法无法有效地模拟输出态测量结果之间的关联。至关重要的是,与此同时,局部测量结果可以在经典计算机上有效地模拟。我们表明,在我们的协议中,输入和输出态违反的唯一已知经典性标准是量子光学中使用的标准,即相空间非经典性。因此,我们认为我们协议输出态中固有的全局相空间非经典性代表了真正的量子关联。

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