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A new life for sterile neutrinos: resolving inconsistencies using hot dark matter

Within the standard LCDM model of cosmology, the recent Planck measurements have shown discrepancies with other observations, e.g., measurements of the current expansion rate H_0, the galaxy shear power spectrum and counts of galaxy clusters. We show that if LCDM is extended by a hot dark matter com...

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Detalles Bibliográficos
Autores principales: Hamann, Jan, Hasenkamp, Jasper
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1475-7516/2013/10/044
http://cds.cern.ch/record/1581329
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author Hamann, Jan
Hasenkamp, Jasper
author_facet Hamann, Jan
Hasenkamp, Jasper
author_sort Hamann, Jan
collection CERN
description Within the standard LCDM model of cosmology, the recent Planck measurements have shown discrepancies with other observations, e.g., measurements of the current expansion rate H_0, the galaxy shear power spectrum and counts of galaxy clusters. We show that if LCDM is extended by a hot dark matter component, which could be interpreted as a sterile neutrino, the data sets can be combined consistently. A combination of Planck data, WMAP-9 polarisation data, measurements of the BAO scale, the HST measurement of H_0, Planck galaxy cluster counts and galaxy shear data from the CFHTLens survey yields Delta N_eff = 0.61 pm 0.30 and m_s^eff = (0.41 pm 0.13) eV at 1 sigma. The former is driven mainly by the large H_0 of the HST measurement, while the latter is driven by cluster data. CFHTLens galaxy shear data prefer Delta N_eff >0 and a non-zero mass. Taken together, we find hints for the presence of a hot dark matter component at 3 sigma. A sterile neutrino motivated by the reactor and gallium anomalies appears rejected at even higher significance and an accelerator anomaly sterile neutrino is found in tension at 2 sigma.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
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spelling cern-15813292023-10-26T04:56:10Zdoi:10.1088/1475-7516/2013/10/044http://cds.cern.ch/record/1581329engHamann, JanHasenkamp, JasperA new life for sterile neutrinos: resolving inconsistencies using hot dark matterAstrophysics and AstronomyWithin the standard LCDM model of cosmology, the recent Planck measurements have shown discrepancies with other observations, e.g., measurements of the current expansion rate H_0, the galaxy shear power spectrum and counts of galaxy clusters. We show that if LCDM is extended by a hot dark matter component, which could be interpreted as a sterile neutrino, the data sets can be combined consistently. A combination of Planck data, WMAP-9 polarisation data, measurements of the BAO scale, the HST measurement of H_0, Planck galaxy cluster counts and galaxy shear data from the CFHTLens survey yields Delta N_eff = 0.61 pm 0.30 and m_s^eff = (0.41 pm 0.13) eV at 1 sigma. The former is driven mainly by the large H_0 of the HST measurement, while the latter is driven by cluster data. CFHTLens galaxy shear data prefer Delta N_eff >0 and a non-zero mass. Taken together, we find hints for the presence of a hot dark matter component at 3 sigma. A sterile neutrino motivated by the reactor and gallium anomalies appears rejected at even higher significance and an accelerator anomaly sterile neutrino is found in tension at 2 sigma.Within the standard ΛCDM model of cosmology, the recent Planck measurements have shown discrepancies with other observations, e.g., measurements of the current expansion rate H0, the galaxy shear power spectrum and counts of galaxy clusters.We show that if ΛCDM is extended by a hot dark matter component, which could be interpreted as a sterile neutrino, the data sets can be combined consistently.A combination of Planck data, WMAP-9 polarisation data, measurements of the BAO scale, the HST measurement of H0, Planck galaxy cluster counts and galaxy shear data from the CFHTLens surveyyields ΔNeff = 0.61±0.30 and mseff = (0.41±0.13)eV at 1σ. The former is driven mainly by the large H0 of the HST measurement, while the latter is driven by cluster data. CFHTLens galaxy shear data prefer ΔNeff> 0 and a non-zero mass. Taken together, we find hints for the presence of a hot dark matter component at 3σ. A sterile neutrino motivated by the reactor and gallium anomalies appears rejected at even higher significance and an accelerator anomaly sterile neutrino is found in tension at 2σ.Within the standard LCDM model of cosmology, the recent Planck measurements have shown discrepancies with other observations, e.g., measurements of the current expansion rate H_0, the galaxy shear power spectrum and counts of galaxy clusters. We show that if LCDM is extended by a hot dark matter component, which could be interpreted as a sterile neutrino, the data sets can be combined consistently. A combination of Planck data, WMAP-9 polarisation data, measurements of the BAO scale, the HST measurement of H_0, Planck galaxy cluster counts and galaxy shear data from the CFHTLens survey yields Delta N_eff = 0.61 pm 0.30 and m_s^eff = (0.41 pm 0.13) eV at 1 sigma. The former is driven mainly by the large H_0 of the HST measurement, while the latter is driven by cluster data. CFHTLens galaxy shear data prefer Delta N_eff >0 and a non-zero mass. Taken together, we find hints for the presence of a hot dark matter component at 3 sigma. A sterile neutrino motivated by the reactor and gallium anomalies appears rejected at even higher significance and an accelerator anomaly sterile neutrino is found in tension at 2 sigma.arXiv:1308.3255oai:cds.cern.ch:15813292013-08-14
spellingShingle Astrophysics and Astronomy
Hamann, Jan
Hasenkamp, Jasper
A new life for sterile neutrinos: resolving inconsistencies using hot dark matter
title A new life for sterile neutrinos: resolving inconsistencies using hot dark matter
title_full A new life for sterile neutrinos: resolving inconsistencies using hot dark matter
title_fullStr A new life for sterile neutrinos: resolving inconsistencies using hot dark matter
title_full_unstemmed A new life for sterile neutrinos: resolving inconsistencies using hot dark matter
title_short A new life for sterile neutrinos: resolving inconsistencies using hot dark matter
title_sort new life for sterile neutrinos: resolving inconsistencies using hot dark matter
topic Astrophysics and Astronomy
url https://dx.doi.org/10.1088/1475-7516/2013/10/044
http://cds.cern.ch/record/1581329
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