English

Matter-antimatter asymmetry and dark matter stability from baryon number conservation

High Energy Physics - Phenomenology 2024-09-25 v3

Abstract

There is currently no evidence for a baryon asymmetry in our Universe. Instead, cosmological observations have only demonstrated the existence of a quark-antiquark asymmetry, which does not necessarily imply a baryon asymmetric Universe, since the baryon number of the dark sector particles is unknown. In this paper we discuss a framework where the total baryon number of the Universe is equal to zero, and where the observed quark-antiquark asymmetry arises from neutron portal interactions with a dark sector fermion NN that carries baryon number. In order to render a baryon symmetric universe throughout the whole cosmological history, we introduce a complex scalar χ\chi, with opposite baryon number and with the same initial abundance as NN. Notably, due to the baryon number conservation, χ\chi is absolutely stable and could have an abundance today equal to the observed dark matter abundance. Therefore, in this simple framework, the existence of a quark-antiquark asymmetry is intimately related to the existence (and the stability) of dark matter.

Keywords

Cite

@article{arxiv.2307.02592,
  title  = {Matter-antimatter asymmetry and dark matter stability from baryon number conservation},
  author = {Mar Císcar-Monsalvatje and Alejandro Ibarra and Jérôme Vandecasteele},
  journal= {arXiv preprint arXiv:2307.02592},
  year   = {2024}
}

Comments

Corrected asymmetry dynamics, conclusion unchanged. 15 pages, 5 figures