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Whether the CPT Symmetry Can Be Almighty Even in a Photon

机译:CPT对称性即使在光子中也可以全能

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As a trial, though thinking of general concepts, of our scientific challenge, we consider whether the Charge-Parity-Time (CPT) symmetry can be almighty even in a photon. This is the main aim of this paper. In what follows, we discuss our argumentations dividing the conjecture into two parts. Rotational invariance of physical laws is an accepted principle in Newton’s theory. We show that it leads to an additional constraint on local realistic theories with mixture of ten-particle Greenberger-Horne-Zeilinger state. This new constraint rules out such theories even in some situations in which standard Bell inequalities allow for explicit construction of such theories. This says new hypothesis to the number of ten. Next, it turns out Zermelo-Fraenkel set theory has contradictions. Further, the von Neumann’s theory has a contradiction by using ±1/. We solve the problem of von Neumann’s theory while escaping from all contradictions made by Zermelo-Fraenkel set theory, simultaneously. We assume that the results of measurements are . We assume that only and are possible. This situation meets a structure made by Zermelo-Fraenkel set theory with the axiom of choice. We result in the fact that it may be kept to perform the Deutsch-Jozsa algorithm even in the macroscopic scale because zero does not exist in this case. Our analysis agrees with recent experimental report.
机译:作为一个试验,尽管考虑了一般概念,但也考虑了我们的科学挑战,我们考虑了即使在光子中,电荷奇偶时间(CPT)对称性是否也可以是万能的。这是本文的主要目的。接下来,我们讨论将猜想分为两部分的论点。物理定律的旋转不变性是牛顿理论中公认的原理。我们表明,这导致了与十个粒子的Greenberger-Horne-Zeilinger态的混合对局部现实理论的附加约束。即使在标准贝尔不等式允许显式构建此类理论的某些情况下,这种新的约束也排除了此类理论。这说出新的假设到十个。接下来,事实证明Zermelo-Fraenkel集理论存在矛盾。此外,冯·诺依曼理论在使用±1 /时存在矛盾。我们解决了冯·诺依曼理论的问题,同时避免了Zermelo-Fraenkel集合论提出的所有矛盾。我们假设测量结果为。我们假设只有并且是可能的。这种情况符合Zermelo-Fraenkel集合理论根据选择公理得出的结构。我们得出这样一个事实,即使在宏观尺度上也可以保留执行Deutsch-Jozsa算法,因为在这种情况下不存在零。我们的分析与最近的实验报告一致。

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