English

Scalar Dark Matter, GUT baryogenesis and Radiative neutrino mass

High Energy Physics - Phenomenology 2018-11-14 v2

Abstract

We investigate an interesting correlation among dark matter phenomenology, neutrino mass generation and GUT baryogenesis, based on the scotogenic model. The model contains additional right-handed neutrinos NN and a second Higgs doublet Φ\Phi, both of which are odd under an imposed Z2Z_2 symmetry. The neutral component of Φ\Phi, i.e. the lightest of the Z2Z_2-odd particles, is the dark matter candidate. Due to a Yukawa coupling involving Φ\Phi, NN and the Standard Model leptons, the lepton asymmetry is converted into the dark matter asymmetry so that a non-vanishing BLB-L asymmetry can arise from (BL)(B-L)-conserving GUT baryogenesis, leading to a nonzero baryon asymmetry after the sphalerons decouple. On the other hand, Φ\Phi can also generate neutrino masses radiatively. In other words, the existence of Φ\Phi as the dark matter candidate resuscitates GUT baryogenesis and realizes neutrino masses.

Keywords

Cite

@article{arxiv.1806.08204,
  title  = {Scalar Dark Matter, GUT baryogenesis and Radiative neutrino mass},
  author = {Wei-Chih Huang and Heinrich Päs and Sinan Zeißner},
  journal= {arXiv preprint arXiv:1806.08204},
  year   = {2018}
}

Comments

16 pages, 6 figures. v2: version accepted by PRD