Conservative Estimates of the Mass of the Neutrino from Cosmology
arXiv:astro-ph/0610597 · doi:10.1088/1475-7516/2007/08/004
Abstract
A range of experimental results point to the existence of a massive neutrino. The recent high precision measurements of the cosmic microwave background and the large scale surveys of galaxies can be used to place an upper bound on this mass. In this paper we perform a thorough analysis of all assumptions that go into obtaining a credible limit on . In particular we explore the impact of extending parameter space beyond the current standard cosmological model, the importance of priors and the uncertainties due to biasing in large scale structure. We find that the mass constraints are independent of the choice of parameterization as well as the inclusion of spatial curvature. The results of including the possibility of dark energy and tensors perturbations are shown to depend critically on the data sets used. The difference between an upper bound of 2.2 eV, assuming generic initial conditions, and an upper bound of 0.63 eV, assuming adiabaticity and a galaxy bias of 1, demonstrate the dependence of such a constraint on the assumptions in the analysis.
8 pages, 4 figures, submitted to JCAP, includes tensors and spectral running
References in corpus (8)
- Massive neutrinos and cosmology
- Cosmological parameters from combining the Lyman-alpha forest with CMB, galaxy clustering and SN constraints
- The neutrino mass bound from WMAP-3, the baryon acoustic peak, the SNLS supernovae and the Lyman-alpha forest
- The Cluster Mass Function from Weak Gravitational Lensing
- The Lyman-alpha forest and WMAP year three
- Limit on the Neutrino Mass from the WMAP Three Year Data
- Weighing neutrinos in the presence of a running primordial spectral index
- Cosmology with CMB anisotropy
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- Are cosmological neutrinos free-streaming?
- Weighing neutrinos in gravity in light of BICEP2
- Relaxing neutrino mass bounds by a running cosmological constant
- CMB Neutrino Mass Bounds and Reionization