English

Precision modelling of the matter power spectrum in a Planck-like Universe

Cosmology and Nongalactic Astrophysics 2019-04-09 v2

Abstract

We use a suite of high-resolution NN-body simulations and state-of-the-art perturbation theory to improve the code halofit, which predicts the nonlinear matter power spectrum. We restrict attention to parameters in the vicinity of the Planck Collaboration's best fit. On large-scales (k0.07h/Mpck\lesssim 0.07 h/{\rm Mpc}), our model evaluates the 2-loop calculation from the Multi-point Propagator Theory of Bernardeau et al.(2012). On smaller scales (k0.7h/Mpck \gtrsim 0.7 h/{\rm Mpc}), we transition to a smoothing-spline-fit model, that characterises the differences between the Takahashi et al. (2012) recalibration of halofit2012 and our simulations. We use an additional suite of simulations to explore the response of the power spectrum to variations in the cosmological parameters. In particular, we examine: the time evolution of the dark energy equation of state (w0w_0, waw_a); the matter density Ωm\Omega_m; the physical densities of CDM and baryons (ωc,ωb)(\omega_c,\omega_b); and the primordial power spectrum amplitude AsA_s, spectral index nsn_s, and its running α\alpha. We construct correction functions, which improve halofit's dependence on cosmological parameters. Our newly calibrated model reproduces all of our data with 1%\lesssim1\% precision. Including various systematic errors, such as choice of NN-body code, resolution, and through inspection of the scaled second order derivatives, we estimate the accuracy to be 3%\lesssim3\% over the hyper-cube: w0{1.05,0.95}w_0\in\{-1.05,-0.95\}, wa{0.4,0.4}w_a\in\{-0.4,0.4\}, Ωm,0{0.21,0.4}\Omega_{\rm m,0}\in\{0.21,0.4\}, ωc{0.1,0.13}\omega_{\rm c}\in\{0.1,0.13\}, ωb{2.0,2.4}\omega_{\rm b}\in\{2.0,2.4\}, ns{0.85,1.05}n_{\rm s}\in\{0.85,1.05\}, As{1.72×109,2.58×109}A_s\in\{1.72\times 10^{-9},2.58\times 10^{-9}\}, α{0.2,0.2}\alpha\in\{-0.2,0.2\} up to k=9.0h/Mpck=9.0 h/{\rm Mpc} and out to z=3z=3. Outside of this range the model reverts to halofit2012.

Keywords

Cite

@article{arxiv.1807.00040,
  title  = {Precision modelling of the matter power spectrum in a Planck-like Universe},
  author = {Robert E. Smith and Raul E. Angulo},
  journal= {arXiv preprint arXiv:1807.00040},
  year   = {2019}
}

Comments

31 pages, 18 Figures. Matches version published in MNRAS. We release all power spectra data with the C-code NGenHalofit available at: https://[email protected]/ngenhalofitteam/ngenhalofitpublic.git