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Probing Leptogenesis

The focus of this paper lies on the possible experimental tests of leptogenesis scenarios. We consider both leptogenesis generated from oscillations, as well as leptogenesis from out-of-equilibrium decays. As the Akhmedov–Rubakov–Smirnov (ARS) mechanism allows for heavy neutrinos in the GeV range, t...

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Detalles Bibliográficos
Autores principales: Chun, E.J., Cvetič, G., Dev, P.S.B., Drewes, M., Fong, C.S., Garbrecht, B., Hambye, T., Harz, J., Hernández, P., Kim, C.S., Molinaro, E., Nardi, E., Racker, J., Rius, N., Zamora-Saa, J.
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1142/S0217751X18420058
http://cds.cern.ch/record/2295715
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author Chun, E.J.
Cvetič, G.
Dev, P.S.B.
Drewes, M.
Fong, C.S.
Garbrecht, B.
Hambye, T.
Harz, J.
Hernández, P.
Kim, C.S.
Molinaro, E.
Nardi, E.
Racker, J.
Rius, N.
Zamora-Saa, J.
author_facet Chun, E.J.
Cvetič, G.
Dev, P.S.B.
Drewes, M.
Fong, C.S.
Garbrecht, B.
Hambye, T.
Harz, J.
Hernández, P.
Kim, C.S.
Molinaro, E.
Nardi, E.
Racker, J.
Rius, N.
Zamora-Saa, J.
author_sort Chun, E.J.
collection CERN
description The focus of this paper lies on the possible experimental tests of leptogenesis scenarios. We consider both leptogenesis generated from oscillations, as well as leptogenesis from out-of-equilibrium decays. As the Akhmedov–Rubakov–Smirnov (ARS) mechanism allows for heavy neutrinos in the GeV range, this opens up a plethora of possible experimental tests, e.g. at neutrino oscillation experiments, neutrinoless double beta decay, and direct searches for neutral heavy leptons at future facilities. In contrast, testing leptogenesis from out-of-equilibrium decays is a quite difficult task. We comment on the necessary conditions for having successful leptogenesis at the TeV-scale. We further discuss possible realizations and their model specific testability in extended seesaw models, models with extended gauge sectors, and supersymmetric leptogenesis. Not being able to test high-scale leptogenesis directly, we present a way to falsify such scenarios by focusing on their washout processes. This is discussed specifically for the left–right symmetric model and the observation of a heavy WR, as well as model independently when measuring ΔL = 2 washout processes at the LHC or neutrinoless double beta decay.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
record_format invenio
spelling cern-22957152022-03-31T02:19:45Zdoi:10.1142/S0217751X18420058http://cds.cern.ch/record/2295715engChun, E.J.Cvetič, G.Dev, P.S.B.Drewes, M.Fong, C.S.Garbrecht, B.Hambye, T.Harz, J.Hernández, P.Kim, C.S.Molinaro, E.Nardi, E.Racker, J.Rius, N.Zamora-Saa, J.Probing Leptogenesishep-phParticle Physics - PhenomenologyThe focus of this paper lies on the possible experimental tests of leptogenesis scenarios. We consider both leptogenesis generated from oscillations, as well as leptogenesis from out-of-equilibrium decays. As the Akhmedov–Rubakov–Smirnov (ARS) mechanism allows for heavy neutrinos in the GeV range, this opens up a plethora of possible experimental tests, e.g. at neutrino oscillation experiments, neutrinoless double beta decay, and direct searches for neutral heavy leptons at future facilities. In contrast, testing leptogenesis from out-of-equilibrium decays is a quite difficult task. We comment on the necessary conditions for having successful leptogenesis at the TeV-scale. We further discuss possible realizations and their model specific testability in extended seesaw models, models with extended gauge sectors, and supersymmetric leptogenesis. Not being able to test high-scale leptogenesis directly, we present a way to falsify such scenarios by focusing on their washout processes. This is discussed specifically for the left–right symmetric model and the observation of a heavy WR, as well as model independently when measuring ΔL = 2 washout processes at the LHC or neutrinoless double beta decay.The focus of this chapter lies on the possible experimental tests of leptogenesis scenarios. We consider both leptogenesis generated from oscillations, as well as leptogenesis from out-of-equilibrium decays. As the Akhmedov-Rubakov-Smirnov (ARS) mechanism allows for heavy neutrinos in the GeV range, this opens up a plethora of possible experimental tests, e.g. at neutrino oscillation experiments, neutrinoless double beta decay, and direct searches for neutral heavy leptons at future facilities. In contrast, testing leptogenesis from out-of-equilibrium decays is a quite difficult task. We comment on the necessary conditions for having successful leptogenesis at the TeV-scale. We further discuss possible realizations and their model specific testability in extended seesaw models, models with extended gauge sectors, and supersymmetric leptogenesis. Not being able to test high-scale leptogenesis directly, we present a way to falsify such scenarios by focusing on their washout processes. This is discussed specifically for the left-right symmetric model and the observation of a heavy $W_R$, as well as model independently when measuring $\Delta L = 2$ washout processes at the LHC or neutrinoless double beta decay.arXiv:1711.02865oai:cds.cern.ch:22957152017-11-08
spellingShingle hep-ph
Particle Physics - Phenomenology
Chun, E.J.
Cvetič, G.
Dev, P.S.B.
Drewes, M.
Fong, C.S.
Garbrecht, B.
Hambye, T.
Harz, J.
Hernández, P.
Kim, C.S.
Molinaro, E.
Nardi, E.
Racker, J.
Rius, N.
Zamora-Saa, J.
Probing Leptogenesis
title Probing Leptogenesis
title_full Probing Leptogenesis
title_fullStr Probing Leptogenesis
title_full_unstemmed Probing Leptogenesis
title_short Probing Leptogenesis
title_sort probing leptogenesis
topic hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1142/S0217751X18420058
http://cds.cern.ch/record/2295715
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