Relativistic and spectator effects in leptogenesis with heavy sterile neutrinos
arXiv:1904.09956 · doi:10.1007/JHEP02(2020)117
Abstract
For leptogenesis with heavy sterile neutrinos above the electroweak scale, asymmetries produced at early times (in the relativistic regime) are relevant, if they are protected from washout. This can occur for weak washout or when the asymmetry is partly protected by being transferred to spectator fields. We thus study the relevance of relativistic effects for leptogenesis in a minimal seesaw model with two sterile neutrinos in the strongly hierarchical limit. Starting from first principles, we derive a set of momentum-averaged fluid equations to calculate the final asymmetry as a function of the washout strength and for different initial conditions at order one accuracy. For this, we take the leading fluid approximation for the relativistic -even and odd rates. Assuming that spectator fields remain in chemical equilibrium, we find that for weak washout, relativistic corrections lead to a sign flip and an enhancement of the asymmetry for a vanishing initial abundance of sterile neutrinos. As an example for the effect of partially equilibrated spectators, we consider bottom-Yukawa and weak-sphaleron interactions in leptogenesis driven by sterile neutrinos with masses GeV. For a vanishing initial abundance of sterile neutrinos, this can give rise to another flip and an absolute enhancement of the final asymmetry in the strong washout regime by up to two orders of magnitude relative to the cases either without spectators or with fully equilibrated ones. These effects are less pronounced for thermal initial conditions for the sterile neutrinos. The -violating source in the relativistic regime at early times is important as it is proportional to the product of lepton-number violating and lepton-number conserving rates, and therefore less suppressed than an extrapolation of the nonrelativistic approximations may suggest.
47 pages, 11 figures
References in corpus (10)
- Leptogenesis
- Thermal production of relativistic Majorana neutrinos: Strong enhancement by multiple soft scattering
- Quantum Boltzmann Equations and Leptogenesis
- Full Boltzmann equations for leptogenesis including scattering
- Medium corrections to the CP-violating parameter in leptogenesis
- Right-handed neutrino production rate at T > 160 GeV
- Spectator Effects during Leptogenesis in the Strong Washout Regime
- Quantum corrections to leptogenesis from the gradient expansion
- CP asymmetry in heavy Majorana neutrino decays at finite temperature: the hierarchical case
- Freeze-out of baryon number in low-scale leptogenesis
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