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任意小的测量独立性足以表现出量子非局域性。

Arbitrarily small amount of measurement independence is sufficient to manifest quantum nonlocality.

机构信息

Group of Applied Physics, University of Geneva, CH-1211 Geneva 4, Switzerland.

Institute for Theoretical Physics, ETH Zurich, 8093 Zurich, Switzerland.

出版信息

Phys Rev Lett. 2014 Nov 7;113(19):190402. doi: 10.1103/PhysRevLett.113.190402. Epub 2014 Nov 6.

Abstract

The use of Bell's theorem in any application or experiment relies on the assumption of free choice or, more precisely, measurement independence, meaning that the measurements can be chosen freely. Here, we prove that even in the simplest Bell test-one involving 2 parties each performing 2 binary-outcome measurements-an arbitrarily small amount of measurement independence is sufficient to manifest quantum nonlocality. To this end, we introduce the notion of measurement dependent locality and show that the corresponding correlations form a convex polytope. These correlations can thus be characterized efficiently, e.g., using a finite set of Bell-like inequalities-an observation that enables the systematic study of quantum nonlocality and related applications under limited measurement independence.

摘要

贝尔定理在任何应用或实验中的使用都依赖于自由选择的假设,或者更准确地说,测量独立性的假设,这意味着测量可以自由选择。在这里,我们证明,即使在最简单的贝尔测试——涉及两个参与者,每个参与者执行两个二进制结果的测量——中,任意小量的测量独立性足以表现出量子非局域性。为此,我们引入了测量相关局域性的概念,并表明相应的相关性形成了一个凸多面体。这些相关性因此可以有效地进行特征化,例如,使用有限的贝尔型不等式集——这一观察结果使得在有限的测量独立性下,对量子非局域性和相关应用进行系统研究成为可能。

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