Are Light Sterile Neutrinos Preferred or Disfavored by Cosmology?
arXiv:1208.4354 · doi:10.1103/PhysRevD.87.065003
Abstract
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 measurements, and strongly disfavored by the data at Δχ^2 ~ 18 when using the SALT2 fitter. When excluding the supernova measurements, the sterile neutrino model is disfavored by the other datasets at Δχ^2 ~ 12, and at best becomes mildly disfavored at Δχ^2 ~ 3 when allowing for curvature, evolving dark energy, additional relativistic species, running of the spectral index, and freedom in the primordial helium abundance. No single additional parameter accounts for most of this effect. Therefore, if laboratory experiments continue to favor a scenario with roughly eV mass sterile neutrinos, and if this becomes decisively disfavored by cosmology, then a more exotic cosmological model than explored here may become necessary.
10 pages, 3 figures. Minor refinements, reflects version accepted for publication in PRD
References in corpus (14)
- Spectra and Light Curves of Six Type Ia Supernovae at 0.511 < z < 1.12 and the Union2 Compilation
- Bayes in the sky: Bayesian inference and model selection in cosmology
- Primordial Nucleosynthesis in the Precision Cosmology Era
- Cosmology seeking friendship with sterile neutrinos
- The Effect of Thermal Neutrino Motion on the Non-linear Cosmological Matter Power Spectrum
- Impact of massive neutrinos on nonlinear matter power spectrum
- Nonlinear power spectrum in the presence of massive neutrinos: perturbation theory approach, galaxy bias and parameter forecasts
- Constraining The Early-Universe Baryon Density And Expansion Rate
- Limits on Dark Radiation, Early Dark Energy, and Relativistic Degrees of Freedom
- Observational bounds on the cosmic radiation density
- The minimal 3+2 neutrino model versus oscillation anomalies
- Dark Radiation Emerging After Big Bang Nucleosynthesis?
- A theory of extra radiation in the Universe
- On what scale should inflationary observables be constrained?
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- Is there evidence for additional neutrino species from cosmology?
- Status of Neutrino Mass and Mixing
- Lepton Asymmetry and Neutrino Oscillations Interplay
- A Semiblind Reconstruction of the History of Effective Number of Neutrinos Using CMB Data