English

Neutrinoless double-beta decay with massive scalar emission

High Energy Physics - Phenomenology 2018-09-26 v2

Abstract

Searches for neutrino-less double-beta decay (0ν2β0\nu2\beta) place an important constraint on models where light fields beyond the Standard Model participate in the neutrino mass mechanism. While 0ν2β0\nu2\beta experimental collaborations often consider various massless majoron models, including various forms of majoron couplings and multi-majoron final-state processes, none of these searches considered the scenario where the "majoron" ϕ\phi is not massless, mϕm_\phi\sim~MeV, of the same order as the QQ-value of the 0ν2β0\nu2\beta reaction. We consider this parameter region and estimate 0ν2βϕ0\nu2\beta\phi constraints for mϕm_\phi of order MeV. The constraints are affected not only by kinematical phase space suppression but also by a change in the signal to background ratio characterizing the search. As a result, 0ν2βϕ0\nu2\beta\phi constraints for mϕ>0m_\phi>0 diminish significantly below the reaction threshold. This has phenomenological implications, which we illustrate focusing on high-energy neutrino telescopes. Our results motivate a dedicated analysis by 0ν2β0\nu2\beta collaborations, analogous to the dedicated analyses targeting massless majoron models.

Keywords

Cite

@article{arxiv.1802.08019,
  title  = {Neutrinoless double-beta decay with massive scalar emission},
  author = {Kfir Blum and Yosef Nir and Michal Shavit},
  journal= {arXiv preprint arXiv:1802.08019},
  year   = {2018}
}

Comments

9 pages, 6 figures. v2: added App.A w/ phase space integrals, a few added comments, match journal version

R2 v1 2026-06-23T00:29:59.793Z