Multi-step phase transition and gravitational wave from general $\mathbb{Z}_2$ scalar extensions
Abstract
Multi-step phase transition provides a paradigm in which a broken symmetry during phase transition can be restored, enriching the phenomena of both dark matter and baryon asymmetry. We study the dynamics of the multi-step phase transition in the standard model extension with additional isospin -plet scalar field under a discrete symmetry. We find that the multi-step phase transition could be triggered if there is a moderately large coupling between the Higgs and the and this coupling is required to be larger as the mass of the and/or isospin increase. The first-order phase transition at the first (second) step can be realized by the thermal loop (tree-level barrier) effects. Thus it is more likely that a detectable spectrum of gravitational waves can be produced at the second step of the phase transition.
Cite
@article{arxiv.2212.07756,
title = {Multi-step phase transition and gravitational wave from general $\mathbb{Z}_2$ scalar extensions},
author = {Qing-Hong Cao and Katsuya Hashino and Xu-Xiang Li and Jiang-Hao Yu},
journal= {arXiv preprint arXiv:2212.07756},
year = {2025}
}
Comments
41 pages, 12 figures; Journal version