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Unambiguous comparison of quantum measurements

机译:量子测量的明确比较

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摘要

The goal of comparison is to reveal the difference of compared objects as fast and reliably as possible. In this paper we formulate and investigate the unambiguous comparison of unknown quantum measurements represented by nondegenerate sharp positive operator valued measures. We distinguish between measurement devices with a priori labeled and unlabeled outcomes. In both cases we can unambiguously conclude only that the measurements are different. For the labeled case it is sufficient to use each unknown measurement only once and the average conditional success probability decreases with the Hilbert space dimension as 1/d. If the outcomes of the apparatuses are not labeled, then the problem is more complicated. We analyze the case of two-dimensional Hilbert space. In this case single shot comparison is impossible and each measurement device must be used (at least) twice. The optimal test state in the two-shot scenario gives the average conditional success probability 4/9. Interestingly, the optimal experiment detects unambiguously the difference with non-vanishing probability for any pair of observables.
机译:比较的目的是尽可能快而可靠地揭示比较对象的差异。在本文中,我们制定并研究了由非简并尖锐的正算子值度量表示的未知量子度量的明确比较。我们区分具有先验标记结果和未标记结果的测量设备。在这两种情况下,我们只能明确得出结论,即测量值是不同的。对于标记的情况,仅对每个未知度量使用一次就足够了,并且平均条件成功概率随着希尔伯特空间维数为1 / d而降低。如果未标记设备的结果,则问题将更加复杂。我们分析了二维希尔伯特空间的情况。在这种情况下,单次比较是不可能的,每个测量设备必须(至少)使用两次。两次测试场景中的最佳测试状态给出的平均条件成功概率为4/9。有趣的是,最佳实验可以明确地检测出任何一对可观测对象之间的差异而不会消失。

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