Nemevšek Miha, Senjanović Goran, Tello Vladimir
ICTP, Trieste I-34151, Italy and Jožef Stefan Institute, Ljubljana 1000, Slovenia.
ICTP, Trieste I-34151, Italy.
Phys Rev Lett. 2013 Apr 12;110(15):151802. doi: 10.1103/PhysRevLett.110.151802. Epub 2013 Apr 9.
Probing the origin of neutrino mass by disentangling the seesaw mechanism is one of the central issues of particle physics. We address it in the minimal left-right symmetric model and show how the knowledge of light and heavy neutrino masses and mixings suffices to determine their Dirac Yukawa couplings. This in turn allows one to make predictions for a number of high and low energy phenomena, such as decays of heavy neutrinos, neutrinoless double beta decay, electric dipole moments of charged leptons, and neutrino transition moments. We also discuss a way of reconstructing the neutrino Dirac Yukawa couplings at colliders such as the LHC.
通过解开跷跷板机制来探究中微子质量的起源是粒子物理学的核心问题之一。我们在最小左右对称模型中对此进行研究,并展示了轻中微子和重中微子的质量与混合信息如何足以确定它们的狄拉克 Yukawa 耦合。这进而使得人们能够对许多高能和低能现象做出预测,例如重中微子的衰变、无中微子双β衰变、带电轻子的电偶极矩以及中微子跃迁矩。我们还讨论了在诸如大型强子对撞机(LHC)这样的对撞机上重建中微子狄拉克 Yukawa 耦合的方法。