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Testing violation of the Leggett–Garg-type inequality in neutrino oscillations of the Daya Bay experiment

机译:在大亚湾实验的中微子振荡中测试违反Leggett–Garg型不等式的行为

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The Leggett–Garg inequality (LGI), derived under the assumption of realism, acts as the temporal Bell inequality. It is studied in electromagnetic and strong interaction like photonics, superconducting qubits and nuclear spin. The weak interaction two-state oscillations of neutrinos affirmed the violation of Leggett–Garg-type inequalities (LGtI). We make an empirical test for the deviation of experimental results with the classical limits by analyzing the survival probability data of reactor neutrinos at a distinct range of baseline dividing energies, as an analog to a single neutrino detected at different times. A study of the updated data of the Daya Bay experiment unambiguously depicts an obvious cluster of data over the classical bound of LGtI and shows a (6.1sigma ) significance of the violation of them.
机译:在现实主义假设下得出的莱格特-盖尔不等式(LGI)充当时间Bell不等式。在电磁和强相互作用(例如光子学,超导量子位和核自旋)中进行了研究。中微子的弱相互作用两态振荡证实了对Leggett–Garg型不等式(LGtI)的违反。我们通过分析反应堆中微子在不同基线分配能范围内的反应堆中微子的生存概率数据,对在不同时间检测到的单个中微子进行模拟,对实验结果与经典极限之间的偏差进行了经验测试。对大亚湾实验的更新数据的研究清楚地描述了LGtI经典边界上的明显数据簇,并显示了违反它们的(6.1sigma)意义。

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