TY - JOUR
T1 - Status of rates and rate equations for thermal leptogenesis
AU - Biondini, S.
AU - Bödeker, D.
AU - Brambilla, N.
AU - Garny, M.
AU - Ghiglieri, J.
AU - Hohenegger, A.
AU - Laine, M.
AU - Mendizabal, S.
AU - Millington, P.
AU - Salvio, A.
AU - Vairo, A.
N1 - Publisher Copyright:
© 2018 World Scientific Publishing Company.
PY - 2018/2/28
Y1 - 2018/2/28
N2 - In many realizations of leptogenesis, heavy right-handed neutrinos play the main role in the generation of an imbalance between matter and antimatter in the early Universe. Hence, it is relevant to address quantitatively their dynamics in a hot and dense environment by taking into account the various thermal aspects of the problem at hand. The strong washout regime offers an interesting framework to carry out calculations systematically and reduce theoretical uncertainties. Indeed, any matter-antimatter asymmetry generated when the temperature of the hot plasma T exceeds the right-handed neutrino mass scale M is efficiently erased, and one can focus on the temperature window T M. We review recent progress in the thermal field theoretic derivation of the key ingredients for the leptogenesis mechanism: the right-handed neutrino production rate, the CP asymmetry in the heavy-neutrino decays and the washout rates. The derivation of evolution equations for the heavy-neutrino and lepton-asymmetry number densities, their rigorous formulation and applicability are also discussed.
AB - In many realizations of leptogenesis, heavy right-handed neutrinos play the main role in the generation of an imbalance between matter and antimatter in the early Universe. Hence, it is relevant to address quantitatively their dynamics in a hot and dense environment by taking into account the various thermal aspects of the problem at hand. The strong washout regime offers an interesting framework to carry out calculations systematically and reduce theoretical uncertainties. Indeed, any matter-antimatter asymmetry generated when the temperature of the hot plasma T exceeds the right-handed neutrino mass scale M is efficiently erased, and one can focus on the temperature window T M. We review recent progress in the thermal field theoretic derivation of the key ingredients for the leptogenesis mechanism: the right-handed neutrino production rate, the CP asymmetry in the heavy-neutrino decays and the washout rates. The derivation of evolution equations for the heavy-neutrino and lepton-asymmetry number densities, their rigorous formulation and applicability are also discussed.
KW - Thermal field theory
KW - effective field theories
KW - nonequilibrium quantum field theory
UR - http://www.scopus.com/inward/record.url?scp=85042742603&partnerID=8YFLogxK
U2 - 10.1142/S0217751X18420046
DO - 10.1142/S0217751X18420046
M3 - Article
AN - SCOPUS:85042742603
SN - 0217-751X
VL - 33
JO - International Journal of Modern Physics A
JF - International Journal of Modern Physics A
IS - 5-6
M1 - 1842004
ER -