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An experimental test of non-local realism

机译:非本地现实主义的实验测试

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Most working scientists hold fast to the concept of 'realism'—a viewpoint according to which an external reality exists independent of observation. But quantum physics has shattered some of our cornerstone beliefs. According to Bell's theorem, any theory that is based on the joint assumption of realism and locality (meaning that local events cannot be affected by actions in space-like separated regions) is at variance with certain quantum predictions. Experiments with entangled pairs of particles have amply confirmed these quantum predictions, thus rendering local realistic theories untenable. Maintaining realism as a fundamental concept would therefore necessitate the introduction of 'spooky' actions that defy locality. Here we show by both theory and experiment that a broad and rather reasonable class of such non-local realistic theories is incompatible with experimentally observable quantum correlations. In the experiment, we measure previously untested correlations between two entangled photons, and show that these correlations violate an inequality proposed by Leggett for non-local realistic theories. Our result suggests that giving up the concept of locality is not sufficient to be consistent with quantum experiments, unless certain intuitive features of realism are abandoned.
机译:大多数在职的科学家都坚守“现实主义”的概念,即一种观点,根据该观点,外部现实独立于观察而存在。但是量子物理学已经打破了我们的一些基本信念。根据贝尔定理,任何基于现实主义和局部性(即局部事件不受空间状分离区域中的动作影响)共同假设的理论都与某些量子预测不一致。纠缠在一起的粒子对的实验已经充分证实了这些量子预测,从而使局部现实理论难以成立。因此,要保持现实主义为基本概念,就必须采取无视局部的“怪异”行动。在这里,我们通过理论和实验都表明,这类非局部现实理论的广泛而合理的类别与实验可观察到的量子相关性是不相容的。在实验中,我们测量了两个纠缠光子之间未经测试的相关性,并证明这些相关性违反了Leggett针对非局部现实理论提出的不等式。我们的结果表明,除非放弃了现实主义的某些直观特征,否则放弃局部性的概念不足以与量子实验保持一致。

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