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首页> 外文期刊>Journal of High Energy Physics >TeV scale see-saw mechanisms of neutrino mass generation, the Majorana nature of the heavy singlet neutrinos and (ββ)-decay
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TeV scale see-saw mechanisms of neutrino mass generation, the Majorana nature of the heavy singlet neutrinos and (ββ)-decay

机译:中微子质量产生的TeV尺度跷跷板机制,重单线态中微子的Majorana性质和(ββ)-衰变

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It is shown that the Majorana nature of the heavy neutrinos N j having masses in the range of M j ~ (100 - 1000) GeV and present in the TeV scale type I and inverse see-saw scenarios of neutrino mass generation, is unlikely to be observable in the currently operating and future planned accelerator experiments (including LHC) due to the existence of very strong constraints on the parameters and couplings responsible for the corresponding ∣ΔL∣= 2 processes, L being the total lepton charge. If the heavy Majorana neutrinos N j are observed and they are associated only with the type I or inverse see-saw mechanisms and no additional TeV scale “new physics”, they will behave like Dirac fermions to a relatively high level of precision, being actually pseudo-Dirac particles. The observation of effects proving the Majorana nature of N j would imply that these heavy neutrinos have additional relatively strong couplings to the Standard Model particles (as, e.g. in the type III see-saw scenario), or that light neutrino masses compatible with the observations are generated by a mechanism other than see-saw (e.g., radiatively at one or two loop level) in which the heavy Majorana neutrinos N j are nevertheless involved.
机译:结果表明,重中微子N j 的马约拉纳性质具有M j 〜(100-1000)GeV范围内的质量,并且以TeV尺度类型I存在。中微子质量生成和反向跷跷板场景在当前运行和计划中的加速器实验(包括LHC)中不太可能观察到,这是由于参数和耦合的严格约束导致相应的∣ΔL∣ = 2个过程,L为轻子的总电荷。如果观察到沉重的马约拉纳中微子N j ,并且它们仅与I型或反向跷跷板机制相关联,并且没有其他TeV尺度的“新物理学”,它们的行为将像狄拉克费米子一样高精度,实际上是伪狄拉克粒子。对证明N j 的Majorana性质的效应的观察表明,这些重中微子与标准模型粒子具有相对较强的耦合(例如,在III型跷跷板场景中),或者与观测值相容的轻中微子质量是通过跷跷板以外的其他机制(例如,辐射在一个或两个回路水平)产生的,其中重的马约拉纳中微子N j 参与其中。

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