English

An SO(10) model with adjoint fermions for double seesaw neutrino masses

High Energy Physics - Phenomenology 2015-05-20 v1

Abstract

An SO(10)SO(10) model where the 10H10_H and 120H120_H representations are used for generating fermion masses is quite predictive, though due to the absence of SU(2)L,RSU(2)_{L,R} triplet/singlet fields it cannot give rise to neutrino masses through the usual type-I or type-II seesaw mechanisms. In this paper for neutrino masses we propose an extension of such an SO(10)SO(10) model by adding fermions in the adjoint representation (45F{45}_F) and a symmetry breaking scalar 16ˉH\bar{16}_H. The 16ˉH\bar{16}_H couples the adjoint fermions to the standard fermions in 16F{16}_F and induces neutrino masses through the `double seesaw' mechanism. In order to enhance the predictivity of the model we impose μτ\mu-\tau flavour symmetry on the Yukawa matrices for 10H10_H and 16ˉH\bar{16}_H whereas for the 120H120_H it is assumed to be antisymmetric. We discuss the conditions that the mass matrices must obey so that the model can reproduce the tri-bimaximal mixing pattern.

Keywords

Cite

@article{arxiv.1012.2715,
  title  = {An SO(10) model with adjoint fermions for double seesaw neutrino masses},
  author = {Joydeep Chakrabortty and Srubabati Goswami and Amitava Raychaudhuri},
  journal= {arXiv preprint arXiv:1012.2715},
  year   = {2015}
}

Comments

13 pages, 1 figure