English

A Model of Annihilogenesis

High Energy Physics - Phenomenology 2026-05-04 v1

Abstract

We present an explicit model of leptogenesis via annihilogenesis in which two right-handed Majorana neutrinos couple to the Standard Model lepton doublets and Higgs, and acquire a large mass shift during a strong first-order phase transition of an additional scalar singlet. As bubbles of true vacuum expand, the χa\chi_a are reflected off the walls and confined to shrinking pockets of false vacuum, where the density grows and the dominant CP-violating process is the 242 \to 4 annihilation χ1χ1L1L1ΦΦ\chi_1 \chi_1 \to L_1 L_1 \Phi^* \Phi^*. Interference between tree-level WW and BB exchange and one-loop diagrams containing the heavier χ2\chi_2 produces a CP asymmetry ϵ\epsilon, which we evaluate numerically and find to lie in the range ϵ109|\epsilon| \sim 10^{-9}--10710^{-7} for O(1)\mathcal{O}(1) Yukawa couplings. Electroweak sphalerons convert the resulting lepton asymmetry into a baryon asymmetry YΔBY_{\Delta B} that reproduces the observed value across a broad region of parameter space, with little sensitivity to the bubble-wall velocity or initial pocket size. The Majorana mass that controls ϵ\epsilon is the residual mass of χ1\chi_1 inside the collapsing pockets rather than its post-transition value, so the usual relation between the singlet mass and the Standard Model active neutrino masses is relaxed. As a result, the upper bound on ϵ|\epsilon| from the largest light-neutrino mass that constrains standard thermal leptogenesis does not apply, and the lower limits on the right-handed-neutrino scale and the reheating temperature are relaxed.

Keywords

Cite

@article{arxiv.2605.00095,
  title  = {A Model of Annihilogenesis},
  author = {Arvind Rajaraman and Alexander Stewart and Tim M. P. Tait},
  journal= {arXiv preprint arXiv:2605.00095},
  year   = {2026}
}

Comments

19 pages, 3 figures

R2 v1 2026-07-01T12:44:19.329Z