English

The homogeneity scale and the growth rate of cosmic structures

Cosmology and Nongalactic Astrophysics 2021-11-29 v1

Abstract

We propose a novel approach to obtain the growth rate of cosmic structures, f(z)f(z), from the evolution of the cosmic homogeneity scale, RH(z)R_{\text{H}}(z). Our methodology needs two ingredients in a specific functional form: RH(z)R_{\text{H}}(z) data and the matter two-point correlation function today, i.e., ξ(r,z=0)\xi(r, z=0). We use a Gaussian Process approach to reconstruct the function RHR_{\text{H}}. In the absence of suitable observational information of the matter correlation function in the local Universe, z0z \simeq 0, we assume a fiducial cosmology to obtain ξ(r,z=0)\xi(r, z=0). For this reason, our final result turns out to be a consistency test of the cosmological model assumed. Our results show a good agreement between: (i) the growth rate fRH(z)f^{R_{\text{H}}}(z) obtained through our approach, (ii) the fΛCDM(z)f^{\Lambda\text{CDM}}(z) expected in the fiducial model, and (iii) the best-fit f(z)f(z) from data compiled in the literature. Moreover, using this data compilation, we perform a Gaussian Process to reconstruct the growth rate function fdata(z)f^{\text{data}}(z) and compare it with the function fRH(z)f^{R_{\text{H}}}(z) finding a concordance of < ⁣2σ< \!2 \,\sigma, a good result considering the few data available for both reconstruction processes. With more accurate RH(z)R_{\text{H}}(z) data, from forthcoming surveys, the homogeneity scale function might be better determined and would have the potential to discriminate between Λ\LambdaCDM and alternative scenarios as a new cosmological observable.

Keywords

Cite

@article{arxiv.2111.08541,
  title  = {The homogeneity scale and the growth rate of cosmic structures},
  author = {Felipe Avila and Armando Bernui and Rafael C. Nunes and Edilson de Carvalho and Camila P. Novaes},
  journal= {arXiv preprint arXiv:2111.08541},
  year   = {2021}
}

Comments

Accepted for publication in MNRAS