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Sneutrino Inflation in the Light of WMAP: Reheating, Leptogenesis and Flavour-Violating Lepton Decays

We reconsider the possibility that inflation was driven by a sneutrino - the scalar supersymmetric partner of a heavy singlet neutrino - in the minimal seesaw model of neutrino masses. We show that this model is consistent with data on the cosmic microwave background (CMB), including those from the...

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Detalles Bibliográficos
Autores principales: Ellis, John R., Raidal, Martti, Yanagida, T.
Lenguaje:eng
Publicado: 2003
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.physletb.2003.11.029
http://cds.cern.ch/record/610872
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author Ellis, John R.
Raidal, Martti
Yanagida, T.
author_facet Ellis, John R.
Raidal, Martti
Yanagida, T.
author_sort Ellis, John R.
collection CERN
description We reconsider the possibility that inflation was driven by a sneutrino - the scalar supersymmetric partner of a heavy singlet neutrino - in the minimal seesaw model of neutrino masses. We show that this model is consistent with data on the cosmic microwave background (CMB), including those from the WMAP satellite. We derive and implement the CMB constraints on sneutrino properties, calculate reheating and the cosmological baryon asymmetry arising via leptogenesis from neutrino and sneutrino decays following sneutrino inflation. This is achieved by solving a coupled set of Boltzmann equations describing inflaton decay and leptogenesis in this scenario, and by relating them to light neutrino masses. We show that this scenario is compatible with a low reheating temperature that avoids the gravitino problem, and calculate its predictions for flavour-violating decays of charged leptons. We find that mu -> e gamma should occur close to the present experimental upper limits, as might also tau -> mu gamma.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2003
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spelling cern-6108722023-03-14T19:26:32Zdoi:10.1016/j.physletb.2003.11.029http://cds.cern.ch/record/610872engEllis, John R.Raidal, MarttiYanagida, T.Sneutrino Inflation in the Light of WMAP: Reheating, Leptogenesis and Flavour-Violating Lepton DecaysParticle Physics - PhenomenologyWe reconsider the possibility that inflation was driven by a sneutrino - the scalar supersymmetric partner of a heavy singlet neutrino - in the minimal seesaw model of neutrino masses. We show that this model is consistent with data on the cosmic microwave background (CMB), including those from the WMAP satellite. We derive and implement the CMB constraints on sneutrino properties, calculate reheating and the cosmological baryon asymmetry arising via leptogenesis from neutrino and sneutrino decays following sneutrino inflation. This is achieved by solving a coupled set of Boltzmann equations describing inflaton decay and leptogenesis in this scenario, and by relating them to light neutrino masses. We show that this scenario is compatible with a low reheating temperature that avoids the gravitino problem, and calculate its predictions for flavour-violating decays of charged leptons. We find that mu -> e gamma should occur close to the present experimental upper limits, as might also tau -> mu gamma.We reconsider the possibility that inflation was driven by a sneutrino - the scalar supersymmetric partner of a heavy singlet neutrino - in the minimal seesaw model of neutrino masses. We show that this model is consistent with data on the cosmic microwave background (CMB), including those from the WMAP satellite. We derive and implement the CMB constraints on sneutrino properties, calculate reheating and the cosmological baryon asymmetry arising via direct leptogenesis from sneutrino decays following sneutrino inflation, and relate them to light neutrino masses. We show that this scenario is compatible with a low reheating temperature that avoids the gravitino problem, and calculate its predictions for flavour-violating decays of charged leptons. We find that $\mu \to e \gamma$ should occur close to the present experimental upper limits, as might also $\tau \to \mu \gamma$.We reconsider the possibility that inflation was driven by a sneutrino—the scalar supersymmetric partner of a heavy singlet neutrino—in the minimal seesaw model of neutrino masses. We show that this model is consistent with data on the cosmic microwave background (CMB), including those from the WMAP satellite. We derive and implement the CMB constraints on sneutrino properties, calculate reheating and the cosmological baryon asymmetry arising via direct leptogenesis from sneutrino decays following sneutrino inflation, and relate them to light neutrino masses. We show that this scenario is compatible with a low reheating temperature that avoids the gravitino problem, and calculate its predictions for flavour-violating decays of charged leptons. We find that μ → eγ should occur close to the present experimental upper limits, as might also τ → μγ .hep-ph/0303242CERN-TH-2003-073CERN-TH-2003-073oai:cds.cern.ch:6108722003-03-28
spellingShingle Particle Physics - Phenomenology
Ellis, John R.
Raidal, Martti
Yanagida, T.
Sneutrino Inflation in the Light of WMAP: Reheating, Leptogenesis and Flavour-Violating Lepton Decays
title Sneutrino Inflation in the Light of WMAP: Reheating, Leptogenesis and Flavour-Violating Lepton Decays
title_full Sneutrino Inflation in the Light of WMAP: Reheating, Leptogenesis and Flavour-Violating Lepton Decays
title_fullStr Sneutrino Inflation in the Light of WMAP: Reheating, Leptogenesis and Flavour-Violating Lepton Decays
title_full_unstemmed Sneutrino Inflation in the Light of WMAP: Reheating, Leptogenesis and Flavour-Violating Lepton Decays
title_short Sneutrino Inflation in the Light of WMAP: Reheating, Leptogenesis and Flavour-Violating Lepton Decays
title_sort sneutrino inflation in the light of wmap: reheating, leptogenesis and flavour-violating lepton decays
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/j.physletb.2003.11.029
http://cds.cern.ch/record/610872
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AT raidalmartti sneutrinoinflationinthelightofwmapreheatingleptogenesisandflavourviolatingleptondecays
AT yanagidat sneutrinoinflationinthelightofwmapreheatingleptogenesisandflavourviolatingleptondecays