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MeV sterile neutrinos in low reheating temperature cosmological scenarios

It is commonly assumed that the cosmological and astrophysical bounds on the mixings of sterile with active neutrinos are much more stringent than those obtained from laboratory measurements. We point out that in scenarios with a very low reheating temperature T_RH << 100 MeV at the end of (th...

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Detalles Bibliográficos
Autores principales: Gelmini, Graciela, Osoba, Efunwande, Palomares-Ruiz, Sergio, Pascoli, Silvia
Lenguaje:eng
Publicado: 2008
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1475-7516/2008/10/029
http://cds.cern.ch/record/1095090
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author Gelmini, Graciela
Osoba, Efunwande
Palomares-Ruiz, Sergio
Pascoli, Silvia
author_facet Gelmini, Graciela
Osoba, Efunwande
Palomares-Ruiz, Sergio
Pascoli, Silvia
author_sort Gelmini, Graciela
collection CERN
description It is commonly assumed that the cosmological and astrophysical bounds on the mixings of sterile with active neutrinos are much more stringent than those obtained from laboratory measurements. We point out that in scenarios with a very low reheating temperature T_RH << 100 MeV at the end of (the last episode of) inflation or entropy creation, the abundance of sterile neutrinos becomes largely suppressed with respect to that obtained within the standard framework. Thus, in this case cosmological bounds become much less stringent than usually assumed, allowing sterile neutrinos to be ``visible'' in future experiments. Here, we concentrate on massive (mostly sterile) neutrinos heavier than 1 MeV.
id cern-1095090
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2008
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spelling cern-10950902020-06-20T20:39:12Zdoi:10.1088/1475-7516/2008/10/029http://cds.cern.ch/record/1095090engGelmini, GracielaOsoba, EfunwandePalomares-Ruiz, SergioPascoli, SilviaMeV sterile neutrinos in low reheating temperature cosmological scenariosAstrophysics and AstronomyIt is commonly assumed that the cosmological and astrophysical bounds on the mixings of sterile with active neutrinos are much more stringent than those obtained from laboratory measurements. We point out that in scenarios with a very low reheating temperature T_RH << 100 MeV at the end of (the last episode of) inflation or entropy creation, the abundance of sterile neutrinos becomes largely suppressed with respect to that obtained within the standard framework. Thus, in this case cosmological bounds become much less stringent than usually assumed, allowing sterile neutrinos to be ``visible'' in future experiments. Here, we concentrate on massive (mostly sterile) neutrinos heavier than 1 MeV.It is commonly assumed that the cosmological and astrophysical bounds on the mixings of sterile with active neutrinos are much more stringent than those obtained from laboratory measurements. We point out that in scenarios with a very low reheating temperature T_RH << 100 MeV at the end of (the last episode of) inflation or entropy creation, the abundance of sterile neutrinos becomes largely suppressed with respect to that obtained within the standard framework. Thus, in this case cosmological bounds become much less stringent than usually assumed, allowing sterile neutrinos to be ``visible'' in future experiments. Here, we concentrate on massive (mostly sterile) neutrinos heavier than 1 MeV.arXiv:0803.2735CERN-PH-TH-2008-037DCTP-08-12IPPP-08-06oai:cds.cern.ch:10950902008-03-20
spellingShingle Astrophysics and Astronomy
Gelmini, Graciela
Osoba, Efunwande
Palomares-Ruiz, Sergio
Pascoli, Silvia
MeV sterile neutrinos in low reheating temperature cosmological scenarios
title MeV sterile neutrinos in low reheating temperature cosmological scenarios
title_full MeV sterile neutrinos in low reheating temperature cosmological scenarios
title_fullStr MeV sterile neutrinos in low reheating temperature cosmological scenarios
title_full_unstemmed MeV sterile neutrinos in low reheating temperature cosmological scenarios
title_short MeV sterile neutrinos in low reheating temperature cosmological scenarios
title_sort mev sterile neutrinos in low reheating temperature cosmological scenarios
topic Astrophysics and Astronomy
url https://dx.doi.org/10.1088/1475-7516/2008/10/029
http://cds.cern.ch/record/1095090
work_keys_str_mv AT gelminigraciela mevsterileneutrinosinlowreheatingtemperaturecosmologicalscenarios
AT osobaefunwande mevsterileneutrinosinlowreheatingtemperaturecosmologicalscenarios
AT palomaresruizsergio mevsterileneutrinosinlowreheatingtemperaturecosmologicalscenarios
AT pascolisilvia mevsterileneutrinosinlowreheatingtemperaturecosmologicalscenarios