论文标题

量子网络拓扑的半决赛测试

Semidefinite tests for quantum network topologies

论文作者

Åberg, Johan, Nery, Ranieri, Duarte, Cristhiano, Chaves, Rafael

论文摘要

量子网络在长距离通信,量子加密,时钟同步和分布式量子计算中起着重要作用。通常,这些协议涉及许多独立的来源共享遥远各方之间的纠缠,在测量其系统后,它们在整个网络上产生相关性。给定量子网络可以引起哪些相关性的问题,几乎没有教堂。在这里,我们表明,以前针对经典案例得出的可观察到的协方差的约束也适用于量子网络。网络拓扑产生的测试可以作为半决赛程序施放,从而可以有效地表征广泛的量子网络中的相关性,以及对设备无关和实验测试的证人的系统推导。我们为固定测量设置以及在测量设置的集合中独立选择的当事方获得了这种半决赛测试。该方法的适用性用于各种网络,并与以前的方法进行了比较。

Quantum networks play a major role in long-distance communication, quantum cryptography, clock synchronization, and distributed quantum computing. Generally, these protocols involve many independent sources sharing entanglement among distant parties that, upon measuring their systems, generate correlations across the network. The question of which correlations a given quantum network can give rise to, remains almost uncharted. Here we show that constraints on the observable covariances, previously derived for the classical case, also hold for quantum networks. The network topology yields tests that can be cast as semidefinite programs, thus allowing for the efficient characterization of the correlations in a wide class of quantum networks, as well as systematic derivations of device-independent and experimentally testable witnesses. We obtain such semidefinite tests for fixed measurement settings, as well as parties that independently choose among collections of measurement settings. The applicability of the method is demonstrated for various networks, and compared with previous approaches.

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