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Restrictions on the lifetime of sterile neutrinos from primordial nucleosynthesis

We analyze the influence of decaying sterile neutrinos with the masses in the range 1-140 MeV on the primordial Helium-4 abundance, explicitly solving the Boltzmann equations for all particle species, taking into account neutrino flavour oscillations, and paying special attention to systematic uncer...

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Detalles Bibliográficos
Autores principales: Ruchayskiy, Oleg, Ivashko, Artem
Lenguaje:eng
Publicado: 2012
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1475-7516/2012/10/014
http://cds.cern.ch/record/1424087
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author Ruchayskiy, Oleg
Ivashko, Artem
author_facet Ruchayskiy, Oleg
Ivashko, Artem
author_sort Ruchayskiy, Oleg
collection CERN
description We analyze the influence of decaying sterile neutrinos with the masses in the range 1-140 MeV on the primordial Helium-4 abundance, explicitly solving the Boltzmann equations for all particle species, taking into account neutrino flavour oscillations, and paying special attention to systematic uncertainties. We show that the Helium abundance depends only on the sterile neutrino lifetime and not on the way the active-sterile mixing is distributed between flavours, and derive an upper bound on the lifetime. We also demonstrate that the recent results of Izotov & Thuan [arXiv:1001.4440], who find 2sigma higher than predicted by the standard primordial nucleosynthesis value of Helium-4 abundance, are consistent with the presence in the plasma of sterile neutrinos with the lifetime 0.01-2 seconds. The decay of these particles perturbs the spectra of (decoupled) neutrinos and heats photons, changing the ratio of neutrino to photon energy density, that can be interpreted as extra neutrino species at the recombination epoch.
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institution Organización Europea para la Investigación Nuclear
language eng
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spelling cern-14240872020-06-09T17:03:21Zdoi:10.1088/1475-7516/2012/10/014http://cds.cern.ch/record/1424087engRuchayskiy, OlegIvashko, ArtemRestrictions on the lifetime of sterile neutrinos from primordial nucleosynthesisParticle Physics - PhenomenologyWe analyze the influence of decaying sterile neutrinos with the masses in the range 1-140 MeV on the primordial Helium-4 abundance, explicitly solving the Boltzmann equations for all particle species, taking into account neutrino flavour oscillations, and paying special attention to systematic uncertainties. We show that the Helium abundance depends only on the sterile neutrino lifetime and not on the way the active-sterile mixing is distributed between flavours, and derive an upper bound on the lifetime. We also demonstrate that the recent results of Izotov & Thuan [arXiv:1001.4440], who find 2sigma higher than predicted by the standard primordial nucleosynthesis value of Helium-4 abundance, are consistent with the presence in the plasma of sterile neutrinos with the lifetime 0.01-2 seconds. The decay of these particles perturbs the spectra of (decoupled) neutrinos and heats photons, changing the ratio of neutrino to photon energy density, that can be interpreted as extra neutrino species at the recombination epoch.We analyze the influence of decaying sterile neutrinos with the masses in the range 1-140 MeV on the primordial Helium-4 abundance, explicitly solving the Boltzmann equations for all particle species, taking into account neutrino flavour oscillations, and paying special attention to systematic uncertainties. We show that the Helium abundance depends only on the sterile neutrino lifetime and not on the way the active-sterile mixing is distributed between flavours, and derive an upper bound on the lifetime. We also demonstrate that the recent results of Izotov & Thuan [arXiv:1001.4440], who find 2sigma higher than predicted by the standard primordial nucleosynthesis value of Helium-4 abundance, are consistent with the presence in the plasma of sterile neutrinos with the lifetime 0.01-2 seconds. The decay of these particles perturbs the spectra of (decoupled) neutrinos and heats photons, changing the ratio of neutrino to photon energy density, that can be interpreted as extra neutrino species at the recombination epoch.arXiv:1202.2841CERN-PH-TH-2012-042CERN-PH-TH-2012-042oai:cds.cern.ch:14240872012-02-14
spellingShingle Particle Physics - Phenomenology
Ruchayskiy, Oleg
Ivashko, Artem
Restrictions on the lifetime of sterile neutrinos from primordial nucleosynthesis
title Restrictions on the lifetime of sterile neutrinos from primordial nucleosynthesis
title_full Restrictions on the lifetime of sterile neutrinos from primordial nucleosynthesis
title_fullStr Restrictions on the lifetime of sterile neutrinos from primordial nucleosynthesis
title_full_unstemmed Restrictions on the lifetime of sterile neutrinos from primordial nucleosynthesis
title_short Restrictions on the lifetime of sterile neutrinos from primordial nucleosynthesis
title_sort restrictions on the lifetime of sterile neutrinos from primordial nucleosynthesis
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1088/1475-7516/2012/10/014
http://cds.cern.ch/record/1424087
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AT ivashkoartem restrictionsonthelifetimeofsterileneutrinosfromprimordialnucleosynthesis