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Can violations of Bell's inequalities be considered as the final proof of quantum physics?

机译:违反贝尔不等式的现象是否可以视为量子物理学的最终证明?

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Nowadays, it is commonly admitted that the experimental violation of Bell's inequalities that was successfully demonstrated in the last decades by many experimenters, are indeed the ultimate proof of quantum physics and of its ability to describe the whole microscopic world and beyond. But the historical and scientific story may not be envisioned so clearly: it starts with the original paper of Einstein, Podolsky and Rosen (EPR) aiming at demonstrating that the formalism of quantum theory is incomplete. It then goes through the works of D. Bohm, to finally proceed to the famous John Bell's relationships providing an experimental setup to solve the EPR paradox. In this communication is proposed an alternative reading of this history, showing that modern experiments based on correlations between light polarizations significantly deviate from the original spirit of the EPR paper. It is concluded that current experimental violations of Bell's inequalities cannot be considered as an ultimate proof of the completeness of quantum physics models.
机译:如今,通常公认的是,在过去的几十年中,许多实验者成功地证明了对贝尔不等式的实验违反,这确实是量子物理学及其描述整个微观世界及其他能力的最终证明。但是历史和科学的故事可能并没有那么清晰地预想到:它始于爱因斯坦,波多尔斯基和罗森(EPR)的原始论文,旨在证明量子理论的形式主义是不完整的。然后,它经历了D. Bohm的工作,最后进行了著名的John Bell的关系,提供了解决EPR悖论的实验装置。在这次交流中,提出了对这一历史的另一种解读,表明基于光偏振之间相关性的现代实验大大偏离了EPR论文的初衷。结论是,当前对贝尔不等式的实验违反不能视为量子物理学模型完整性的最终证明。

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