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The digital computer as a metaphor for the perfect laboratory experiment: Loophole-free Bell experiments

机译:数字计算机是完美实验室实验的隐喻:无漏洞的贝尔实验

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Using Einstein-Podolsky-Rosen-Bohm experiments as an example, we demonstrate that the combination of a digital computer and algorithms, as a metaphor for a perfect laboratory experiment, provides solutions to problems of the foundations of physics. Employing discrete-event simulation, we present a counter example to John Bell's remarkable "proof" that any theory of physics, which is both Einstein-local and "realistic" (counterfactually definite), results in a strong upper bound to the correlations that are being measured in Einstein-Podolsky-Rosen-Bohm experiments. Our counter example, which is free of the so-called detection-, coincidence-, memory-, and contextuality loophole, violates this upper bound and fully agrees with the predictions of quantum theory for Einstein-Podolsky-Rosen-Bohm experiments. (C) 2016 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license.
机译:以爱因斯坦-波多尔斯基-罗森-鲍姆(Einstein-Podolsky-Rosen-Bohm)实验为例,我们证明了数字计算机和算法的结合,可以作为理想实验室实验的隐喻,为解决物理基础问题提供了解决方案。利用离散事件模拟,我们提出了一个反例,以证明约翰·贝尔的卓越“证明”,即任何物理理论(既是爱因斯坦局部的又是“现实的”(反事实地确定的))都会导致相关性的强上限在爱因斯坦-波多尔斯基-罗森-博姆实验中进行了测量。我们的反例没有所谓的检测,巧合,记忆和上下文漏洞,它违反了这个上限,完全符合爱因斯坦-波多尔斯基-罗森-鲍姆实验的量子理论预测。 (C)2016作者。由Elsevier B.V.发布。这是CC BY-NC-ND许可下的开放获取文章。

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