English

Measuring growth index in a universe with sterile neutrinos

Cosmology and Nongalactic Astrophysics 2014-10-30 v2 General Relativity and Quantum Cosmology High Energy Physics - Phenomenology High Energy Physics - Theory

Abstract

Consistency tests for the general relativity (GR) can be performed by constraining the growth index γ\gamma using the measurements of redshift-space distortions (RSD) in conjunction with other observations. In previous studies, deviations from the GR expected value of γ0.55\gamma\approx 0.55 at the 2--3σ\sigma level were found. In this work, we reconsider the measurement of γ\gamma in a universe with sterile neutrinos. We constrain the sterile neutrino cosmological model using the RSD measurements combined with the cosmic microwave background data (Planck temperature data plus WMAP 9-yr polarization data), the baryon acoustic oscillation data, the Hubble constant direct measurement, the Planck Sunyaev-Zeldovich cluster counts data, and the galaxy shear data. We obtain the constraint result of the growth index, γ=0.5840.048+0.047\gamma=0.584^{+0.047}_{-0.048}, well consistent with the GR expected value (the consistency is at the 0.6σ\sigma level). For the parameters of sterile neutrino, we obtain Neff=3.620.42+0.26N_{\rm{eff}}=3.62^{+0.26}_{-0.42} and mν,sterileeff=0.480.14+0.11m_{\nu,{\rm{sterile}}}^{\rm{eff}}=0.48^{+0.11}_{-0.14} eV. We also consider the BICEP2 data and perform an analysis on the model with tensor modes. Similar fit results are obtained, showing that once light sterile neutrino is considered in the universe, GR will become well consistent with the current observations.

Keywords

Cite

@article{arxiv.1408.4603,
  title  = {Measuring growth index in a universe with sterile neutrinos},
  author = {Jing-Fei Zhang and Yun-He Li and Xin Zhang},
  journal= {arXiv preprint arXiv:1408.4603},
  year   = {2014}
}

Comments

5 pages, 3 figures; accepted for publication in Physics Letters B