A Model of Annihilogenesis
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 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 annihilation . Interference between tree-level and exchange and one-loop diagrams containing the heavier produces a CP asymmetry , which we evaluate numerically and find to lie in the range -- for Yukawa couplings. Electroweak sphalerons convert the resulting lepton asymmetry into a baryon asymmetry 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 is the residual mass of 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 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