English

Low-Scale Leptogenesis with Low-Energy Dirac CP-Violation

High Energy Physics - Phenomenology 2023-11-09 v2

Abstract

We study the freeze-in scenario of leptogenesis via oscillations within the type-I seesaw model with two quasi-degenerate heavy Majorana neutrinos N1,2N_{1,\,2} having masses M2>M1(0.1100)GeVM_2 > M_1 \sim (0.1-100)\,\text{GeV}, (M2M1)/M11(M_2-M_1)/M_1 \ll 1, focusing on the role of the CP-violation provided by the Dirac phase δ\delta of the Pontecorvo-Maki-Nakagawa-Sakata lepton mixing matrix. We find that viable leptogenesis can be due solely to CP-violating values of δ\delta and that the N1,2N_{1,\,2} total mixing squared Θ2=αΘα2\Theta^2=\sum_\alpha\Theta^2_\alpha needed is within the reach of future experiments, Θα\Theta_\alpha parameterising the coupling to the charged lepton α=e,μ,τ\alpha=e,\,\mu,\,\tau. Furthermore, the required parameter space differs from that associated with additional Casas-Ibarra sources of CP-violation. Future determination of δ\delta, Θ2\Theta^2 and/or the ratios Θτ2:Θμ2:Θe2\Theta_\tau^2:\Theta^2_\mu:\Theta^2_e would provide a critical test of the considered scenario.

Keywords

Cite

@article{arxiv.2307.07476,
  title  = {Low-Scale Leptogenesis with Low-Energy Dirac CP-Violation},
  author = {Alessandro Granelli and Silvia Pascoli and Serguey T. Petcov},
  journal= {arXiv preprint arXiv:2307.07476},
  year   = {2023}
}

Comments

7 pages, 2 figures; matches version published in PRD

R2 v1 2026-06-28T11:30:43.052Z