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The connection between Bell's inequalities based on probabilities and those based on correlations

机译:基于概率的贝尔不等式与基于相关性的不等式之间的联系

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摘要

Violation of Bell inequalities is widely regarded as a definitive test for non-locality. However, Bell correlational inequalities must always be satisfied by all jointly present, cross-correlated data. The correlations of variable pairs obtained in repeated runs are not cross-correlated in this way and are not required to satisfy the Bell inequality. In addition, by using information regarded as non-local, proper joint correlations may be computed among counterfactual and measured variables. These correlations satisfy the Bell inequality, but are spatially non-stationary in angle. By using a simple symmetry condition, such considerations may be extended to inequalities in probabilities. The latter may be derived directly from correlational inequalities developed by Clauser, Horner, Shimony and Holt (CHSH). Violation of either correlational or probabilistic Bell inequalities then implies that the Bell correlation cannot be accounted for by a stochastic process that is spatially stationary in angle coordinates. However, other processes may still be allowed.
机译:违反Bell不等式被广泛认为是针对非局部性的确定性检验。但是,必须始终通过所有共同存在的互相关数据来满足Bell相关不等式。在重复运行中获得的变量对的相关性不会以这种方式互相关,并且不需要满足Bell不等式。另外,通过使用被认为是非局部的信息,可以在反事实变量和测量变量之间计算适当的联合相关性。这些相关关系满足贝尔不等式,但在角度上在空间上是不平稳的。通过使用简单的对称条件,这样的考虑可以扩展到概率的不等式。后者可以直接从Clauser,Horner,Shimony和Holt(CHSH)发展的相关不等式得出。违反相关性或概率性Bell不等式则意味着,不能通过在角度坐标中空间固定的随机过程来解释Bell相关性。但是,仍然可以允许其他过程。

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