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Experimental test of nonlocal causality

机译:非局部因果关系的实验检验

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摘要

Explaining observations in terms of causes and effects is central to empirical science. However, correlations between entangled quantum particles seem to defy such an explanation. This implies that some of the fundamental assumptions of causal explanations have to give way. We consider a relaxation of one of these assumptions, Bell’s local causality, by allowing outcome dependence: a direct causal influence between the outcomes of measurements of remote parties. We use interventional data from a photonic experiment to bound the strength of this causal influence in a two-party Bell scenario, and observational data from a Bell-type inequality test for the considered models. Our results demonstrate the incompatibility of quantum mechanics with a broad class of nonlocal causal models, which includes Bell-local models as a special case. Recovering a classical causal picture of quantum correlations thus requires an even more radical modification of our classical notion of cause and effect.
机译:从因果关系上解释观察是经验科学的中心。但是,纠缠的量子粒子之间的相关性似乎无视这种解释。这意味着因果解释的一些基本假设必须让位。我们通过允许结果依赖来考虑放宽这些假设之一,即贝尔的本地因果关系:远程方的测量结果之间的直接因果关系。我们使用来自光子实验的干预性数据来约束两方贝尔方案中这种因果影响的强度,并使用贝尔类型不等式测试的观察数据来考虑模型。我们的研究结果表明,量子力学与广泛的非局部因果模型不兼容,其中包括贝尔局部模型作为特例。因此,要恢复量子相关性的经典因果关系图,就需要对我们的经典因果概念进行更根本的修改。

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