English

Soft leptogenesis in the inverse seesaw model

High Energy Physics - Phenomenology 2010-10-27 v2

Abstract

We consider leptogenesis induced by soft supersymmetry breaking terms ("soft leptogenesis"), in the context of the inverse seesaw mechanism. In this model there are lepton number (L) conserving and L-violating soft supersymmetry-breaking B-terms involving the singlet sneutrinos which, together with the -- generically small-- L-violating parameter responsible of the neutrino mass, give a small mass splitting between the four singlet sneutrino states of a single generation. In combination with the trilinear soft supersymmetry breaking terms they also provide new CP violating phases needed to generate a lepton asymmetry in the singlet sneutrino decays. We obtain that in this scenario the lepton asymmetry is proportional to the L-conserving soft supersymmetry-breaking B-term, and it is not suppressed by the L-violating parameters. Consequently we find that, as in the standard see-saw case, this mechanism can lead to sucessful leptogenesis only for relatively small value of the relevant soft bilinear coupling. The right-handed neutrino masses can be sufficiently low to elude the gravitino problem. Also the corresponding Yukawa couplings involving the lightest of the right-handed neutrinos are constrained to be \sum |Y_{1k}|^2\lesssim 10^{-7} which generically implies that the neutrino mass spectrum has to be strongly hierarchical.

Keywords

Cite

@article{arxiv.hep-ph/0611311,
  title  = {Soft leptogenesis in the inverse seesaw model},
  author = {J. Garayoa and M. C. Gonzalez-Garcia and N. Rius},
  journal= {arXiv preprint arXiv:hep-ph/0611311},
  year   = {2010}
}

Comments

28 pages, 1 figure; some references added; final version to appear in JHEP