The quantum Boltzmann equations relevant for leptogenesis, obtained using non-equilibrium quantum field theory, are described. They manifest memory effects leading to a timedependent CP asymmetry which depends upon the previous history of the system. This result is particularly relevant in resonant leptogenesis where the asymmetry is generated by the decays of nearly mass-degenerate right-handed neutrinos. The impact of the non-trivial time evolution of the CP asymmetry is discussed either in the generic resonant leptogenesis scenario or in the more specific Minimal Lepton Flavour Violation framework. Significant quantitative differences arise with respect to the usual approach in which the time dependence of the CP asymmetry is neglected.

Quantum Boltzmann Equations in Resonant Leptogenesis / De Simone, Andrea. - (2008), pp. 445-450. (Intervento presentato al convegno 2008 Electroweak Interactions and Unified Theories : tenutosi a La Thuile nel 1-8 Marzo 2008).

Quantum Boltzmann Equations in Resonant Leptogenesis

De Simone, Andrea
2008-01-01

Abstract

The quantum Boltzmann equations relevant for leptogenesis, obtained using non-equilibrium quantum field theory, are described. They manifest memory effects leading to a timedependent CP asymmetry which depends upon the previous history of the system. This result is particularly relevant in resonant leptogenesis where the asymmetry is generated by the decays of nearly mass-degenerate right-handed neutrinos. The impact of the non-trivial time evolution of the CP asymmetry is discussed either in the generic resonant leptogenesis scenario or in the more specific Minimal Lepton Flavour Violation framework. Significant quantitative differences arise with respect to the usual approach in which the time dependence of the CP asymmetry is neglected.
2008
Proceedings of the XLIIIrd RENCONTRES DE MORIOND.2008 ELECTROWEAK INTERACTIONS AND UNIFIED THEORIES
445
450
The Gioi Publishers
De Simone, Andrea
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11767/15302
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