PaperPanorama

arXiv:1508.05466·v1·High Energy Physics — Phenomenology

Constraining Type I Seesaw with Flavor Symmetry From Neutrino Data and Leptogenesis

Rupam Kalita🇮🇳 · Debasish Borah🇮🇳

PDFarXivINSPIREDOI

Abstract

We study a type I seesaw model of neutrino masses within the framework of flavor symmetry. Incorporating the presence of both singlet and triplet flavons under symmetry, we construct the leptonic mass matrices involved in type I seesaw mechanism. We then construct the light neutrino mass matrix using the values of neutrino oscillation parameters keeping the presently undetermined parameters namely, the lightest neutrino mass , one Dirac CP phase and two Majorana phases as free parameters. Comparing the mass matrices derived using parameters as well as light neutrino parameters, we then evaluate all the parameters in terms of light neutrino parameters. Assuming some specific vacuum alignments of triplet flavon field, we then numerically evaluate all the free parameters in the light neutrino sector, using which we also find out the remaining parameters. We then use the numerical values of these parameters to calculate baryon asymmetry through the mechanism of leptogenesis. We not only constrain the vacuum alignments from the requirement of successful leptogenesis, but also constrain the free parameters in the light neutrino sector to certain range of values. These values can be tested in ongoing and future neutrino experiments providing a way to discriminate between different possible vacuum alignments discussed in this work.

Comments: 35 pages, 24 figures, to appear in Phys. Rev. D

Citation historyopen in Citation History ↗