English

Left-right symmetry and leading contributions to neutrinoless double beta decay

High Energy Physics - Phenomenology 2021-04-21 v1 Nuclear Experiment Nuclear Theory

Abstract

We study the impact of the mixing (LR mixing) between the standard model WW boson and its hypothetical, heavier right-handed parter WRW_R on the neutrinoless double beta decay (0νββ0\nu\beta\beta-decay) rate. Our study is done in the minimal left-right symmetric model assuming type-II dominance scenario with charge conjugation as the left-right symmetry. We then show that the 0νββ0\nu\beta\beta-decay rate may be dominated by the contribution proportional to this LR mixing, which at the hadronic level induces the leading-order contribution to the interaction between two pions and two charged leptons. The resulting long-range pion exchange contribution can significantly enhance the decay rate compared to previously considered short-range contributions. Finally, we find that even if future cosmological experiments rule out the inverted hierarchy for neutrino masses, there are still good prospects for a positive signal in the next generation of 0νββ0\nu\beta\beta-decay experiments.

Keywords

Cite

@article{arxiv.2009.01257,
  title  = {Left-right symmetry and leading contributions to neutrinoless double beta decay},
  author = {Gang Li and Michael Ramsey-Musolf and Juan Carlos Vasquez},
  journal= {arXiv preprint arXiv:2009.01257},
  year   = {2021}
}

Comments

6 pages, 3 figures