The Serendipity of Electroweak Baryogenesis
Abstract
The origin of the matter antimatter asymmetry of the universe remains unexplained in the Standard Model of particle physics. The origin of the flavour structure is another major puzzle of the theory. In this article, we report on recent work attempting to link the two themes through the appealing framework of electroweak baryogenesis. We show that Yukawa couplings of Standard Model fermions can be the source of CP-violation for electroweak baryogenesis if they vary at the same time as the Higgs is acquiring its vacuum expectation value, offering new avenues for electroweak baryogenesis. The advantage of this approach is that it circumvents the usual severe bounds from Electric Dipole moments. These ideas apply if the mechanism explaining the flavour structure of the Standard Model is connected to electroweak symmetry breaking, as motivated for instance in Randall-Sundrum or Composite Higgs models. We compute the resulting baryon asymmetry for different configurations of the Yukawa coupling variation across the bubble wall, and show that it can naturally be of the right order.
Keywords
Cite
@article{arxiv.1807.11507,
title = {The Serendipity of Electroweak Baryogenesis},
author = {Geraldine Servant},
journal= {arXiv preprint arXiv:1807.11507},
year = {2018}
}
Comments
ArXiv version of the contribution to the "Higgs cosmology" issue published in Philosophical Transactions A, associated with the Theo Murphy meeting which took place at the Royal Society Kavli Centre at Chicheley Hall on March 27-28 2017. 12 pages, 6 figures