English

Galaxy Clustering in 3D and Modified Gravity Theories

Cosmology and Nongalactic Astrophysics 2016-01-27 v1 General Relativity and Quantum Cosmology High Energy Physics - Theory

Abstract

We study Modified Gravity (MG) theories by modelling the redshifted matter power spectrum in a spherical Fourier-Bessel (sFB) basis. We use a fully non-linear description of the real-space matter power-spectrum and include the lowest-order redshift-space correction (Kaiser effect), taking into account some additional non-linear contributions. Ignoring relativistic corrections, which are not expected to play an important role for a shallow survey, we analyse two different modified gravity scenarios, namely the generalised Dilaton scalar-tensor theories and the f(R)f({R}) models in the large curvature regime. We compute the 3D power spectrum Cs(k1,k2){\cal C}^s_{\ell}(k_1,k_2) for various such MG theories with and without redshift space distortions, assuming precise knowledge of background cosmological parameters. Using an all-sky spectroscopic survey with Gaussian selection function φ(r)exp(r2/r02)\varphi(r)\propto \exp(-{r^2 / r^2_0}), r0=150h1Mpcr_0 = 150 \, h^{-1} \, {\textrm{Mpc}}, and number density of galaxies Nˉ=104  Mpc3\bar {\textrm{N}} =10^{-4}\;{\textrm{Mpc}}^{-3}, we use a χ2\chi^2 analysis, and find that the lower-order (25)(\ell \leq 25) multipoles of Cs(k,k){\cal C}^s_\ell(k,k') (with radial modes restricted to k<0.2hMpc1k < 0.2 \, h \,{\textrm{Mpc}}^{-1}) can constraint the parameter fR0f_{R_0} at a level of 2×105(3×105)2\times 10^{-5} (3\times 10^{-5}) with 3σ3 \sigma confidence for n=1(2)n=1(2). Combining constraints from higher >25\ell > 25 modes can further reduce the error bars and thus in principle make cosmological gravity constraints competitive with solar system tests. However this will require an accurate modelling of non-linear redshift space distortions. Using a tomographic β(a)\beta(a)-m(a)m(a) parameterization we also derive constraints on specific parameters describing the Dilaton models of modified gravity.

Keywords

Cite

@article{arxiv.1508.00583,
  title  = {Galaxy Clustering in 3D and Modified Gravity Theories},
  author = {Dipak Munshi and Geraint Pratten and Patrick Valageas and Peter Coles and Philippe Brax},
  journal= {arXiv preprint arXiv:1508.00583},
  year   = {2016}
}

Comments

21 pages, 15 Figures, 1 Table, Submitted to MNRAS

R2 v1 2026-06-22T10:25:29.415Z