English

Bridging resonant leptogenesis and low-energy CP violation with an RGE-modified seesaw relation

High Energy Physics - Phenomenology 2020-04-08 v3 High Energy Physics - Experiment

Abstract

We propose a special type-I seesaw scenario in which the Yukawa coupling matrix YνY^{}_\nu can be fully reconstructed by using the light Majorana neutrino masses mim^{}_i, the heavy Majorana neutrino masses MiM^{}_i and the PMNS lepton flavor mixing matrix UU. It is the RGE-induced correction to the seesaw relation that helps interpret the observed baryon-antibaryon asymmetry of the Universe via flavored resonant thermal leptogenesis with M1M2M3M^{}_1 \simeq M^{}_2 \ll M^{}_3. We show that our idea works well in either the τ\tau-flavored regime with equilibrium temperature TM1(109,1012]T \simeq M^{}_1 \in (10^9, 10^{12}] GeV or the (μ+τ)(\mu+\tau)-flavored regime with TM1(105,109]T \simeq M^{}_1 \in (10^5, 10^9] GeV, provided the light neutrinos have a normal mass ordering. We find that the same idea is also viable for a {\it minimal} type-I seesaw model with two nearly degenerate heavy Majorana neutrinos.

Keywords

Cite

@article{arxiv.2003.06312,
  title  = {Bridging resonant leptogenesis and low-energy CP violation with an RGE-modified seesaw relation},
  author = {Zhi-zhong Xing and Di Zhang},
  journal= {arXiv preprint arXiv:2003.06312},
  year   = {2020}
}

Comments

15 pages, 4 figures, a typo corrected and references added