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Quantum nonlocality without entanglement: explicit dependence on prior probabilities of nonorthogonal mirror-symmetric states

机译:Quantum Nonlocality没有纠缠:显式依赖于非正交镜对称状态的现有概率

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In the case of a multi-party system, through local operations and classical communication (LOCC), each party may not perform perfect discrimination of quantum states that are separable and orthogonal. This property of quantum ensemble is called "nonlocality without entanglement" since each local party has a limit to full information of given quantum states. When this property is extended to the case of minimum-error discrimination, one can see that it is revealed when a nonlocal measurement provides more information about the unentangled states than LOCC does. One may infer the fact that the property depends on quantum states composing the quantum ensemble. However, an essential but unsettled question about the property is whether an explicit dependence on prior probabilities in terms of minimum-error discrimination could be shown in nonlocality without entanglement. In a simple term, one can ask whether different quantum ensembles made of the same separable quantum states could exhibit explicitly different behavior of the nonlocality. We answer this question in the positive, and we furthermore provide the explicit functional dependence of guessing probability on prior probabilities for the mirror-symmetric ensemble.
机译:在多方系统的情况下,通过本地操作和经典通信(LOCC),每个方可能无法完美识别可分离和正交的量子状态。 Quantum Ensemble的这种属性称为“非划分而不纠缠”,因为每个当地人对给定量子州的全部信息有限制。当此属性扩展到最小误差判别的情况时,可以看到当非识别量测量提供关于未受控制状态的更多信息时显示出的信息。可以推断属性取决于计算量子集合的量子状态。然而,关于该物业的必要性但不明的问题是在最小误差歧视方面是否对现有概率的明确依赖可以在不entanglement中显示非光性。在一个简单的术语中,人们可以询问由相同可分离量子状态的不同量子集合是否可以表现出明确的非招生行为。我们在正面回答了这个问题,我们还提供了猜测概率对镜对称集合的现有概率的显式功能依赖性。

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