Medium corrections to the CP-violating parameter in leptogenesis
arXiv:1002.0331 · doi:10.1103/PhysRevD.81.085028
Abstract
In two recent papers, arXiv:0909.1559 and arXiv:0911.4122, it has been demonstrated that one can obtain quantum corrected Boltzmann kinetic equations for leptogenesis using a top-down approach based on the Schwinger-Keldysh/Kadanoff-Baym formalism. These "Boltzmann-like" equations are similar to the ones obtained in the conventional bottom-up approach but differ in important details. In particular there is a discrepancy between the CP-violating parameter obtained in the first-principle derivation and in the framework of thermal field theory. Here we demonstrate that the two approaches can be reconciled if causal n-point functions are used in the thermal field theory approach. The new result for the medium correction to the CP-violating parameter is qualitatively different from the conventional one. The analogy to a toy model considered earlier enables us to write down consistent quantum corrected Boltzmann equations for thermal leptogenesis in the Standard Model (supplemented by three right-handed neutrinos) which include quantum statistical terms and medium corrected expressions for the CP-violating parameter.
13 pages, 9 figures
References in corpus (1)
Cited by in corpus (12)
- Matter and Antimatter in the Universe
- Thermal production of relativistic Majorana neutrinos: Strong enhancement by multiple soft scattering
- Leptogenesis in the Universe
- Kadanoff-Baym Approach to Flavour Mixing and Oscillations in Resonant Leptogenesis
- Probing leptogenesis with GeV-scale sterile neutrinos at LHCb and BELLE II
- Systematic approach to thermal leptogenesis
- Leptogenesis: The Other Cuts
- Strong Washout Approximation to Resonant Leptogenesis
- Examining leptogenesis with lepton flavor violation and the dark matter abundance
- Nonthermal violation in soft leptogenesis
- Quasiparticles in Leptogenesis - A hard-thermal-loop study
- How many new particles do we need after the Higgs boson?