Hiding neutrinoless double beta decay in the minimal seesaw mechanism
arXiv:2012.12564 · doi:10.1103/PhysRevD.103.015014
Abstract
We present a possibility that the neutrinoless double beta decay can be hidden in the minimal seesaw mechanism where the standard model is extended by two right-handed neutrinos which have a hierarchical mass structure. In this framework, the lepton number is violated due to the massive Majorana neutrinos. Especially, we investigate the case that the heavier right-handed neutrino is sufficiently heavy to decouple from the decay while the lighter one is lighter enough than the typical Fermi-momentum scale of nuclei and gives a sizable contribution to the decay. Under the specific condition on mixing elements, the lighter right-handed neutrino can give a significant destructive contribution which suppresses or even hides to the effective mass of the neutrinoless double beta decay. In this case, the flavor structure of the mixing element of the lighter right-handed neutrino with ordinary neutrinos is predicted depending on the Majorana CP violating phase of active neutrinos.
6 pages, 2 figures, v2 version published in PRD
References in corpus (9)
- Limit on Neutrinoless ββ Decay of Xe-136 from the First Phase of KamLAND-Zen and Comparison with the Positive Claim in Ge-76
- Flavour Matters in Leptogenesis
- and nuclear matrix elements in the interacting boson model with isospin restoration
- Opening a new window for warm dark matter
- Arbitrary mass Majorana neutrinos in neutrinoless double beta decay
- Final result of CUPID-0 phase-I in the search for the Se Neutrinoless Double Beta Decay
- Mixing of Active and Sterile Neutrinos
- Neutrino-less Double Beta Decay of 48Ca studied by CaF2(Eu) Scintillators
- Measurement of the Decay Half-Life and Search for the Decay of Cd with the NEMO-3 Detector