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The photon identification loophole in EPRB experiments: computer models with single-wing selection

机译:EPRB实验中的光子识别漏洞:单翼选择的计算机模型

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摘要

Recent Einstein-Podolsky-Rosen-Bohm experiments [M. Giustina et al. Phys. Rev. Lett. 115, 250401 (2015); L. K. Shalm et al. Phys. Rev. Lett. 115, 250402 (2015)] that claim to be loophole free are scrutinized. The combination of a digital computer and discrete-event simulation is used to construct a minimal but faithful model of the most perfected realization of these laboratory experiments. In contrast to prior simulations, all photon selections are strictly made, as they are in the actual experiments, at the local station and no other “post-selection” is involved. The simulation results demonstrate that a manifestly non-quantum model that identifies photons in the same local manner as in these experiments can produce correlations that are in excellent agreement with those of the quantum theoretical description of the corresponding thought experiment, in conflict with Bell’s theorem which states that this is impossible. The failure of Bell’s theorem is possible because of our recognition of the photon identification loophole. Such identification measurement-procedures are necessarily included in all actual experiments but are not included in the theory of Bell and his followers.
机译:Einstein-Podolsky-Rosen-Bohm最近的实验[M. Giustina等。物理牧师115,250401(2015); L.K.Shalm等。物理牧师115,250402(2015)]审查了声称没有漏洞的问题。数字计算机和离散事件模拟的结合用于构建最小但忠实的模型,以最完美地实现这些实验室实验。与先前的模拟相反,所有光子的选择都像在实际实验中一样在本地站严格进行,并且不涉及其他“后选择”。仿真结果表明,以与这些实验相同的局部方式识别光子的明显非量子模型,可以产生与相应思想实验的量子理论描述的相关性极佳的相关性,这与贝尔定理相冲突。指出这是不可能的。贝尔定理的失败是有可能的,因为我们认识到了光子识别漏洞。此类识别测量过程必须包含在所有实际实验中,但不包含在Bell及其追随者的理论中。

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