We find that the viability of a cosmological model that incorporates 2 sterile neutrinos with masses around 1 eV each, as favored by global neutrino oscillation analyses including short baseline results, is significantly dependent on the choice of datasets included in the analysis and the ability to control the systematic uncertainties associated with these datasets. Our analysis includes a variety of cosmological probes including the cosmic microwave background (WMAP7+SPT), Hubble constant (HST), galaxy power spectrum (SDSS-DR7), and supernova distances (SDSS and Union2 compilations). In the joint observational analysis, our sterile neutrino model is equally favored as a LCDM model when using the MLCS light curve fitter for the supernova m...
Cosmological measurements are affected by the energy density of massive neutrinos. We extend here a ...
Cosmology and short-baseline (SBL) neutrino oscillation data both hint at the existence of light ste...
Precision cosmology and big-bang nucleosynthesis mildly favor extra radiation in the universe beyond...
We analyze the most recent cosmological data, including Planck, taking into account the possible exi...
By combining data from cosmic microwave background (CMB) experiments (including the recent BOOMERANG...
International audienceAlthough the MiniBooNE experiment has severely restricted the possibleexistenc...
Light sterile neutrinos might mix with the active ones and be copiously produced in the early Univer...
Light sterile neutrinos might mix with the active ones and be copiously produced in the early Univer...
Sterile neutrinos are natural extensions to the standard model of particle physics in neutrino mass ...
Abstract: In this paper we revisit the question of the information which cosmology provides on the s...
There are indications that the neutrino oscillation data from reactor experiments and the LSND and M...
Based on the published Proceedings for the 10th International Symposium on Particles, Strings and Co...
We report the result of a search for sterile neutrinos with the latest cosmological observations. Bo...
Neutrinos, being the only fermions in the Standard Model of Particle Physics that do not possess ele...
Although the MiniBooNE experiment has severely restricted the possible existence of light sterile ne...
Cosmological measurements are affected by the energy density of massive neutrinos. We extend here a ...
Cosmology and short-baseline (SBL) neutrino oscillation data both hint at the existence of light ste...
Precision cosmology and big-bang nucleosynthesis mildly favor extra radiation in the universe beyond...
We analyze the most recent cosmological data, including Planck, taking into account the possible exi...
By combining data from cosmic microwave background (CMB) experiments (including the recent BOOMERANG...
International audienceAlthough the MiniBooNE experiment has severely restricted the possibleexistenc...
Light sterile neutrinos might mix with the active ones and be copiously produced in the early Univer...
Light sterile neutrinos might mix with the active ones and be copiously produced in the early Univer...
Sterile neutrinos are natural extensions to the standard model of particle physics in neutrino mass ...
Abstract: In this paper we revisit the question of the information which cosmology provides on the s...
There are indications that the neutrino oscillation data from reactor experiments and the LSND and M...
Based on the published Proceedings for the 10th International Symposium on Particles, Strings and Co...
We report the result of a search for sterile neutrinos with the latest cosmological observations. Bo...
Neutrinos, being the only fermions in the Standard Model of Particle Physics that do not possess ele...
Although the MiniBooNE experiment has severely restricted the possible existence of light sterile ne...
Cosmological measurements are affected by the energy density of massive neutrinos. We extend here a ...
Cosmology and short-baseline (SBL) neutrino oscillation data both hint at the existence of light ste...
Precision cosmology and big-bang nucleosynthesis mildly favor extra radiation in the universe beyond...