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Relativistic independence bounds nonlocality

机译:相对论独立性限制了非局部性

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摘要

If nature allowed nonlocal correlations other than those predicted by quantum mechanics, would that contradict some physical principle? Various approaches have been put forward in the past two decades in an attempt to single out quantum nonlocality. However, none of them can explain the set of quantum correlations arising in the simplest scenarios. Here, it is shown that generalized uncertainty relations, as well as a specific notion of locality, give rise to both familiar and new characterizations of quantum correlations. In particular, we identify a condition, relativistic independence, which states that uncertainty relations are local in the sense that they cannot be influenced by other experimenters’ choices of measuring instruments. We prove that theories with nonlocal correlations stronger than the quantum ones do not satisfy this notion of locality, and therefore, they either violate the underlying generalized uncertainty relations or allow experimenters to nonlocally tamper with the uncertainty relations of their peers.
机译:如果自然界允许非局部关联而不是量子力学所预测的关联,这是否会与某些物理原理相矛盾?在过去的二十年中,已经提出了各种方法来试图找出量子非局域性。但是,它们都无法解释在最简单的情况下出现的一组量子相关性。在此表明,广义的不确定性关系以及特定的局部性概念引起了量子相关性的熟悉和新的表征。特别是,我们确定了一种条件,即相对论独立性,它指出不确定性关系是局部的,因为它们不受其他实验者对测量仪器的选择的影响。我们证明具有比量子相关性更强的非局部相关性的理论不能满足该局部性的概念,因此,它们要么违反了潜在的广义不确定性关系,要么允许实验者局部地篡改其同行的不确定性关系。

著录项

  • 期刊名称 Science Advances
  • 作者

    Avishy Carmi; Eliahu Cohen;

  • 作者单位
  • 年(卷),期 2019(5),4
  • 年度 2019
  • 页码 eaav8370
  • 总页数 11
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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