English

Constraints on Massive Neutrinos from the CFHTLS Angular Power Spectrum

Cosmology and Nongalactic Astrophysics 2015-06-04 v1

Abstract

We use the galaxy angular power spectrum at z0.51.2z\sim0.5-1.2 from the Canada-France-Hawaii-Telescope Legacy Survey Wide fields (CFHTLS-Wide) to constrain separately the total neutrino mass mν\sum{m_\nu} and the effective number of neutrino species NeffN_{\rm{eff}}. This survey has recently benefited from an accurate calibration of the redshift distribution, allowing new measurements of the (non-linear) matter power spectrum in a unique range of scales and redshifts sensitive to neutrino free streaming. Our analysis makes use of a recent model for the effect of neutrinos on the weakly non-linear matter power spectrum derived from accurate N-body simulations. We show that CFHTLS, combined with WMAP7 and a prior on the Hubble constant provides an upper limit of mν<0.29\sum{m_\nu}<0.29\,eV and Neff=4.171.26+1.62N_{\rm{eff}} =4.17^{+1.62}_{-1.26} (2σ\,\sigma confidence levels). If we omit smaller scales which may be affected by non-linearities, these constraints become mν<0.41\sum{m_\nu}<0.41\,eV and Neff=3.981.20+2.02N_{\rm{eff}} =3.98^{+2.02}_{-1.20} (2σ\,\sigma confidence levels). Finally we show that the addition of other large scale structures probes can further improve these constraints, demonstrating that high redshift large volumes surveys such as CFHTLS are complementary to other cosmological probes of the neutrino mass.

Keywords

Cite

@article{arxiv.1203.5105,
  title  = {Constraints on Massive Neutrinos from the CFHTLS Angular Power Spectrum},
  author = {Jun-Qing Xia and Benjamin R. Granett and Matteo Viel and Simeon Bird and Luigi Guzzo and Martin G. Haehnelt and Jean Coupon and Henry Joy McCracken and Yannick Mellier},
  journal= {arXiv preprint arXiv:1203.5105},
  year   = {2015}
}

Comments

15 pages, 8 figures, 3 tables

R2 v1 2026-06-21T20:38:39.492Z