De Zela F
Departamento de Ciencias, Sección Física, Pontificia Universidad Católica del Perú, Apartado 1761, Lima, Peru.
Sci Rep. 2017 Nov 6;7(1):14570. doi: 10.1038/s41598-017-14956-y.
The long-lasting view of entanglement as the characteristic trait of quantum mechanics has been recently challenged by experimental demonstrations of non-quantum entanglement. This motivates a review of the meaning of Bell violations, which have been widely taken to prove the impossibility of a realistic interpretation of quantum mechanics and as a manifestation of its non-local character. This work provides new theoretical evidence for the need of reviewing the meaning of Bell violations, especially when they occur outside the quantum framework. We present a local-realistic model that reproduces quantum predictions concerning Bell tests. We claim that local-realism is fully compatible with correlations that are not of the Bell type and therefore lie outside the scope of Bell's theorem. Most experimental Bell tests involve either spin vectors spanning the Bloch sphere or Stokes vectors spanning the Poincaré sphere. A suitable statistical tool that allows assessing correlations between vectors is given by inner-product-type correlations. Using them, it is possible to reproduce quantum predictions for all Bell states, thereby explaining experimental results of Bell tests within a local-realistic framework.
长期以来,纠缠一直被视为量子力学的特征,然而最近非量子纠缠的实验证明对这一观点提出了挑战。这促使人们重新审视贝尔不等式违背的意义,贝尔不等式违背被广泛认为证明了对量子力学进行现实解释的不可能性,并体现了其非局域性。这项工作为重新审视贝尔不等式违背的意义提供了新的理论证据,特别是当它们出现在量子框架之外时。我们提出了一个局域实在模型,该模型再现了关于贝尔测试的量子预测。我们认为局域实在论与非贝尔型的关联完全兼容,因此超出了贝尔定理的范围。大多数实验性贝尔测试涉及跨越布洛赫球的自旋向量或跨越庞加莱球的斯托克斯向量。一种适用于评估向量之间关联的统计工具由内积型关联给出。利用它们,可以再现所有贝尔态的量子预测,从而在局域实在框架内解释贝尔测试的实验结果。