English

On neutrinoless double beta decay in the $\nu$MSM

High Energy Physics - Phenomenology 2016-11-16 v2 High Energy Physics - Experiment

Abstract

We consider the neutrinoless double beta (0νββ0\nu \beta \beta) decay in the so-called ν\nuMSM, in which three right-handed neutrinos with masses below the electroweak scale are additionally introduced to the Standard Model. In this model there appear three heavy neutral leptons N1N_1, N2N_2, and N3N_3 corresponding to right-handed neutrinos. It has been known that the lightest one N1N_1 with keV mass, which is a candidate for dark matter, gives a negligible contribution to the 0νββ0 \nu \beta \beta decay. By contrast, the heavier ones N2N_2 and N3N_3, which are responsible to the seesaw mechanism of neutrino masses and baryogenesis, give the destructive contribution (compared with one from active neutrinos). This is because their mass degeneracy at high precision has been assumed, which is expected by analytical studies of baryogengesis. In this analysis, we find that the effective mass of the 0νββ0\nu \beta \beta decay becomes larger than one from active neutrinos due to the N2N_2 and N3N_3 constructive contribution when the mass difference becomes larger and the mass ordering of active neutrinos is inverted. Such a possibility will be explored by the current and near future experiments of the 0νββ0 \nu \beta \beta decay.

Keywords

Cite

@article{arxiv.1606.06686,
  title  = {On neutrinoless double beta decay in the $\nu$MSM},
  author = {Takehiko Asaka and Shintaro Eijima and Hiroyuki Ishida},
  journal= {arXiv preprint arXiv:1606.06686},
  year   = {2016}
}

Comments

10 pages, 6 figures, v2: published version to appear in Physics Letters B

R2 v1 2026-06-22T14:30:50.308Z