English

Hard-Thermal-Loop Corrections in Leptogenesis II: Solving the Boltzmann Equations

High Energy Physics - Phenomenology 2015-06-03 v2

Abstract

We investigate hard-thermal-loop (HTL) corrections to the final lepton asymmetry in leptogenesis. To this end we solve the Boltzmann equations with HTL-corrected rates and CP asymmetries, which we calculated in paper I of this series. We pay special attention to the influence of the two leptonic quasiparticles that arise at non-zero temperature. We include only decays and inverse decays and allow for the lepton modes to be either decoupled from each other, or to be in chemical equilibrium by some strong interaction, simulating the interaction with gauge bosons. In two additional cases, we approximate the full HTL lepton propagators with zero-temperature propagators, where we replace the zero-temperature mass by the thermal mass of the leptons m(T)m_\ell(T) or the asymptotic mass 2m(T)\sqrt{2} \, m_\ell(T). We compare the final lepton asymmetries of the four thermal cases and the zero-temperature case for zero, thermal and dominant initial neutrino abundance. The final lepton asymmetries of the thermal cases differ considerably from the vacuum case and from each other in the weak washout regime for zero initial neutrino abundance and in the intermediate regime for dominant initial neutrino abundance. In the strong washout regime, the final lepton asymmetry can be enhanced by a factor of two in the case of strongly interacting lepton modes.

Keywords

Cite

@article{arxiv.1111.1235,
  title  = {Hard-Thermal-Loop Corrections in Leptogenesis II: Solving the Boltzmann Equations},
  author = {Clemens Kiessig and Michael Plumacher},
  journal= {arXiv preprint arXiv:1111.1235},
  year   = {2015}
}

Comments

51 pages, 27 figures

R2 v1 2026-06-21T19:31:15.467Z