English

Parameter Space of Leptogenesis in Polynomial Inflation

High Energy Physics - Phenomenology 2024-02-28 v2 Cosmology and Nongalactic Astrophysics

Abstract

Polynomial inflation is a very simple and well motivated scenario. A potential with a concave ``almost'' saddle point at field value ϕ=ϕ0\phi = \phi_0 fits well the cosmic microwave background (CMB) data and makes testable predictions for the running of the spectral index and the tensor to scalar ratio. In this work we analyze leptogenesis in the polynomial inflation framework. We delineate the allowed parameter space giving rise to the correct baryon asymmetry as well as being consistent with data on neutrino oscillations. To that end we consider two different reheating scenarios. (i)(i) If the inflaton decays into two bosons, the reheating temperature can be as high as Trh1014T_\text{rh} \sim 10^{14} GeV without spoiling the flatness of the potential, allowing vanilla N1N_1 thermal leptogenesis to work if Trh>M1T_\text{rh}> M_1 where N1N_1 is the lightest right--handed neutrino and M1M_1 its mass. Moreover, if the dominant decay of the inflaton is into Higgs bosons of the Standard Model, we find that rare three--body inflaton decays into a Higgs boson plus one light and one heavy neutrino allow leptogenesis even for Trh<M1T_\text{rh} < M_1 if the inflaton mass is of order 101210^{12} GeV or higher; in the polynomial inflation scenario this requires ϕ02.5 MP\phi_0 \gtrsim 2.5~M_P. This novel mechanism of non--thermal leptogenesis is quite generic, since the coupling leading to the three--body final state is required in the type I see--saw mechanism. (ii)(ii) If the inflaton decays into two fermions, the flatness of the potential implies a lower reheating temperature. In this case inflaton decay to two N1N_1 still allows successful non--thermal leptogenesis if ϕ00.1 MP\phi_0 \gtrsim 0.1~M_P and Trh106T_\text{rh} \gtrsim 10^{6} GeV.

Keywords

Cite

@article{arxiv.2401.02485,
  title  = {Parameter Space of Leptogenesis in Polynomial Inflation},
  author = {Manuel Drees and Yong Xu},
  journal= {arXiv preprint arXiv:2401.02485},
  year   = {2024}
}

Comments

V1: 19 pages, 3 figures, 1 new mechanism of leptogenesis via 3-body decay. V2: minor modification with a footnote 4 regarding washout effect, version accepted for publication in JCAP

R2 v1 2026-06-28T14:09:01.985Z