Status of rates and rate equations for thermal leptogenesis
Biondini S, Bödeker D, Brambilla N, Garny M, Ghiglieri J, Hohenegger A, Laine M, Mendizabal S, Millington P, Salvio A, Vairo A (2018)
International Journal of Modern Physics. A 33(05n06): 1842004.
Zeitschriftenaufsatz
| Veröffentlicht | Englisch
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Autor*in
Biondini, Simone;
Bödeker, DietrichUniBi;
Brambilla, Nora;
Garny, Mathias;
Ghiglieri, Jacopo;
Hohenegger, Andreas;
Laine, Mikko;
Mendizabal, Sebastian;
Millington, Peter;
Salvio, Alberto;
Vairo, Antonio
Einrichtung
Abstract / Bemerkung
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 $T \ll M$. We review recent progresses 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.
Erscheinungsjahr
2018
Zeitschriftentitel
International Journal of Modern Physics. A
Band
33
Ausgabe
05n06
Art.-Nr.
1842004
ISSN
0217-751X
Page URI
https://pub.uni-bielefeld.de/record/2916399
Zitieren
Biondini S, Bödeker D, Brambilla N, et al. Status of rates and rate equations for thermal leptogenesis. International Journal of Modern Physics. A. 2018;33(05n06): 1842004.
Biondini, S., Bödeker, D., Brambilla, N., Garny, M., Ghiglieri, J., Hohenegger, A., Laine, M., et al. (2018). Status of rates and rate equations for thermal leptogenesis. International Journal of Modern Physics. A, 33(05n06), 1842004. doi:10.1142/S0217751X18420046
Biondini, Simone, Bödeker, Dietrich, Brambilla, Nora, Garny, Mathias, Ghiglieri, Jacopo, Hohenegger, Andreas, Laine, Mikko, et al. 2018. “Status of rates and rate equations for thermal leptogenesis”. International Journal of Modern Physics. A 33 (05n06): 1842004.
Biondini, S., Bödeker, D., Brambilla, N., Garny, M., Ghiglieri, J., Hohenegger, A., Laine, M., Mendizabal, S., Millington, P., Salvio, A., et al. (2018). Status of rates and rate equations for thermal leptogenesis. International Journal of Modern Physics. A 33:1842004.
Biondini, S., et al., 2018. Status of rates and rate equations for thermal leptogenesis. International Journal of Modern Physics. A, 33(05n06): 1842004.
S. Biondini, et al., “Status of rates and rate equations for thermal leptogenesis”, International Journal of Modern Physics. A, vol. 33, 2018, : 1842004.
Biondini, S., Bödeker, D., Brambilla, N., Garny, M., Ghiglieri, J., Hohenegger, A., Laine, M., Mendizabal, S., Millington, P., Salvio, A., Vairo, A.: Status of rates and rate equations for thermal leptogenesis. International Journal of Modern Physics. A. 33, : 1842004 (2018).
Biondini, Simone, Bödeker, Dietrich, Brambilla, Nora, Garny, Mathias, Ghiglieri, Jacopo, Hohenegger, Andreas, Laine, Mikko, Mendizabal, Sebastian, Millington, Peter, Salvio, Alberto, and Vairo, Antonio. “Status of rates and rate equations for thermal leptogenesis”. International Journal of Modern Physics. A 33.05n06 (2018): 1842004.
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