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EPR Steering inequalities with Communication Assistance

机译:沟通协助下的EPR指导不平等

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摘要

In this paper, we investigate the communication cost of reproducing Einstein-Podolsky-Rosen (EPR) steering correlations arising from bipartite quantum systems. We characterize the set of bipartite quantum states which admits a local hidden state model augmented with c bits of classical communication from an untrusted party (Alice) to a trusted party (Bob). In case of one bit of information (c = 1), we show that this set has a nontrivial intersection with the sets admitting a local hidden state and a local hidden variables model for projective measurements. On the other hand, we find that an infinite amount of classical communication is required from an untrusted Alice to a trusted Bob to simulate the EPR steering correlations produced by a two-qubit maximally entangled state. It is conjectured that a state-of-the-art quantum experiment would be able to falsify two bits of communication this way.
机译:在本文中,我们研究了复制由二分量子系统引起的爱因斯坦-波多尔斯基-罗森(EPR)转向相关性的通信成本。我们表征了二分量子态的集合,该集合接受了局部隐藏状态模型,该模型用从不可信方(Alice)到可信方(Bob)的c位经典通信进行了扩展。在只有一点信息的情况下(c = 1),我们证明了该集合与集合允许局部隐藏状态和用于投影测量的局部隐藏变量模型具有不平凡的交集。另一方面,我们发现从不受信任的爱丽丝到受信任的鲍勃需要无限量的经典通信来模拟由两个量子位最大纠缠态产生的EPR转向相关性。据推测,最新的量子实验将能够以这种方式伪造通信的两个比特。

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