论文标题

量子场理论中的重中微子 - 抗抗乙酸抗振荡

Heavy Neutrino-Antineutrino Oscillations in Quantum Field Theory

论文作者

Antusch, Stefan, Rosskopp, Johannes

论文摘要

已经提出,长期重中微子质量本质状态的一致传播可能导致Lepton数量保存(LNC)和违反(LNV)事件的振荡速率,这是生产与流离失所的衰减顶点之间的距离的函数。我们使用外浪包装的形式主义讨论了在量子场理论(QFT)的框架中,我们将这种现象称为重中微子 - 抗抗乙酸抗振荡。振荡概率和预期事件的数量的一般公式是得出的,并且必须讨论必须观察到的中微子 - 抗氨基抗振荡的连贯性和定位条件。然后将公式应用于低尺度的Seesaw场景,该场景具有两个近乎质量的重型中微子,当它们的质量低于$ W $ BOSON质量时,它们可以足够长以产生流离失所的顶点。得出了此情况的领先和临近领导顺序振荡公式。对于先前研究中使用的示例参数点,模拟了所考虑的LNC/LNV过程的运动学,以检查是否满足了相干性和定位条件。我们的结果表明,重中微子 - 抗雷抗振荡的现象确实可以在低尺度的SEESAW场景中发生,并且以平面波接近衍生的先前使用的领先顺序公式,为被考虑的示例参数点提供了良好的近似值。

It has been proposed that the coherent propagation of long-lived heavy neutrino mass eigenstates can lead to an oscillating rate of lepton number conserving (LNC) and violating (LNV) events, as a function of the distance between the production and displaced decay vertices. We discuss this phenomenon, which we refer to as heavy neutrino-antineutrino oscillations, in the framework of quantum field theory (QFT), using the formalism of external wave packets. General formulae for the oscillation probabilities and the number of expected events are derived and the coherence and localisation conditions that have to be satisfied in order for neutrino-antineutrino oscillations to be observable are discussed. The formulae are then applied to a low scale seesaw scenario, which features two nearly mass degenerate heavy neutrinos that can be sufficiently long lived to produce a displaced vertex when their masses are below the $W$ boson mass. The leading and next-to-leading order oscillation formulae for this scenario are derived. For an example parameter point used in previous studies, the kinematics of the considered LNC/LNV processes are simulated, to check that the coherence and localisation conditions are satisfied. Our results show that the phenomenon of heavy neutrino-antineutrino oscillations can indeed occur in low scale seesaw scenarios and that the previously used leading order formulae, derived with a plane wave approach, provide a good approximation for the considered example parameter point.

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