论文标题
使用量子统计数据探测非标准中微子相互作用
Probing the non-standard neutrino interactions using quantum statistics
论文作者
论文摘要
使用Lorentz不变性,CP和CPT对称性以及量子统计的良好原理,我们对(Dirac和Majorana)中微子的可能非标准耦合的影响进行了模型独立的研究。该研究对狄拉克和主要中微子的不同量子统计特性敏感,与中微子介导的违反中微子介导的过程相反,可能会导致可观察到的可观察到的效果,而不会因中微子和较重粒子的小比例而抑制。对于在最终状态下具有相同风味的中微子 - 抗氨基酸对的过程,我们制定了``Dirac Majorana混淆定理(DMCT)''的过程,这表明了为什么在实验中只有两种中微子在实验中的不同行为(如果他们只有标准模型(SM)类似标准的左手手动的左手vector cougeplings veceplings and veceplings,则通常很难观察到这两种中微子的不同行为。我们讨论了在存在非标准中微子相互作用的情况下与混淆定理的偏差,从而发现或限制了这种新型耦合。我们用两个选择的中性当前过程的示例说明了一般结果,$ z \ toν\,\overlineν$和$ \ Mathcal {p} _i \ to \ nathcal {p} _f \,v \,v \,ν\ \,\ overlineLlineLlineLlineCal(带有$ \ \ \ nate den den d den d d den as a as a as a as a as f} us, $ b,k,π$)。我们的分析表明,使用三体衰变,非标准相互作用的存在不仅可以受到限制,而且还可以区分狄拉克和主要中微子的可能性。
Using the well established principles of Lorentz invariance, CP and CPT symmetry, and quantum statistics we do a model-independent study of effects of possible non-standard couplings of (Dirac and Majorana) neutrinos. The study is sensitive to the different quantum statistical properties of the Dirac and Majorana neutrinos which, contrary to neutrino-mediated processes of lepton number violation, could lead to observable effects not suppressed by the small ratios of neutrino and heavier particle masses. For processes with a neutrino-antineutrino pair of the same flavor in the final state, we formulate the ``Dirac Majorana confusion theorem (DMCT)'' showing why it is normally very difficult to observe the different behaviour of both kinds of neutrinos in experiments if they have only the standard model (SM)-like left-handed vector couplings to gauge bosons. We discuss deviations from the confusion theorem in the presence of non-standard neutrino interactions, allowing to discover or constrain such novel couplings. We illustrate the general results with two chosen examples of neutral current processes, $Z \to ν\, \overlineν$ and $\mathcal{P}_i \to \mathcal{P}_f \, ν\, \overlineν$ (with $\mathcal{P}_{i,f}$ denoting pseudoscalar mesons, such as $B,K,π$). Our analysis shows that using 3-body decays the presence of non-standard interactions can not only be constrained but one can also distinguish between Dirac and Majorana neutrino possibilities.