English

Testing the effect of $H_0$ on $f\sigma_8$ tension using a Gaussian Process method

Cosmology and Nongalactic Astrophysics 2021-03-02 v2

Abstract

Using the fσ8(z)f\sigma_8(z) redshift space distortion (RSD) data, the σ80Ωm0\sigma_8^0-\Omega_m^0 tension is studied utilizing a parameterization of growth rate f(z)=Ωm(z)γf(z) = \Omega_m(z)^\gamma. Here, f(z)f(z) is derived from the expansion history H(z)H(z) which is reconstructed from the observational Hubble data applying the Gaussian Process method. It is found that different priors of H0H_0 have great influences on the evolution curve of H(z)H(z) and the constraint of σ80Ωm0\sigma_8^0-\Omega_m^0. When using a larger H0H_0 prior, the low redshifts H(z)H(z) deviate significantly from that of the Λ\LambdaCDM model, which indicates that a dark energy model different from the cosmological constant can help to relax the H0H_0 tension problem. The tension between our best-fit values of σ80Ωm0\sigma_8^0-\Omega_m^0 and that of the \textit{Planck} 2018 Λ\LambdaCDM (PLA) will disappear (less than 1σ1\sigma) when taking a prior for H0H_0 obtained from PLA. Moreover, the tension exceeds 2σ2\sigma level when applying the prior H0=73.52±1.62H_0 = 73.52 \pm 1.62 km/s/Mpc resulted from the Hubble Space Telescope photometry. By comparing the S8Ωm0S_8 -\Omega_m^0 planes of our method with the results from KV450+DES-Y1, we find that using our method and applying the RSD data may be helpful to break the parameter degeneracies.

Keywords

Cite

@article{arxiv.1911.12076,
  title  = {Testing the effect of $H_0$ on $f\sigma_8$ tension using a Gaussian Process method},
  author = {En-Kun Li and Minghui Du and Zhi-Huan Zhou and Hongchao Zhang and Lixin Xu},
  journal= {arXiv preprint arXiv:1911.12076},
  year   = {2021}
}

Comments

13 pages, 10 figures, accepted for publication by MNRAS