Leptogenesis from a Phase Transition in a Dynamical Vacuum
Abstract
We show that a phase transition may take place in the early Universe at a temperature via a Standard Model singlet scalar field which happens to couple to right handed neutrinos (RHN) resulting a temperature dependent mass for them that finally relaxes to a constant value after electroweak phase transition (EWPT). As a result, a requisite amount of lepton asymmetry can be produced at a temperature close to satisfying the observed baryon asymmetry of the Universe via sphaleron process even when the zero temperature masses of the RHNs fall in sub GeV regime providing a testable scenario for leptogenesis. Interestingly, the framework is also capable of predicting a primordial lepton asymmetry (generated at a temperature below the EWPT), as hinted by helium abundance measuring experiments, bearing a correlation with early phase of leptogenesis.
Keywords
Cite
@article{arxiv.2312.13157,
title = {Leptogenesis from a Phase Transition in a Dynamical Vacuum},
author = {Dipendu Bhandari and Arghyajit Datta and Arunansu Sil},
journal= {arXiv preprint arXiv:2312.13157},
year = {2024}
}
Comments
8 pages, 3 figures, version accepted for publication in Physical Review D