English

$\texttt{Hi-COLA}$: Fast, approximate simulations of structure formation in Horndeski gravity

Cosmology and Nongalactic Astrophysics 2023-03-24 v2

Abstract

We introduce Hi-COLA\texttt{Hi-COLA}, a code designed to run fast, approximate N\textit{N}-body simulations of non-linear structure formation in reduced Horndeski gravity. Given an input Lagrangian, Hi-COLA\texttt{Hi-COLA} dynamically constructs the appropriate field equations and consistently solves for the cosmological background, linear growth, and screened fifth force of that theory. Hence Hi-COLA\texttt{Hi-COLA} is a general, adaptable, and useful tool that allows the mildly non-linear regime of many Horndeski theories to be investigated for the first time, at low computational cost. In this work, we first describe the screening approximations and simulation setup of Hi-COLA\texttt{Hi-COLA} for theories with Vainshtein screening. We validate the code against traditional N\textit{N}-body simulations for cubic Galileon gravity, finding 2.5%2.5\% agreement up to kmax=1.2 h/Mpck_{\rm max}=1.2~h/{\rm Mpc}. To demonstrate the flexibility of Hi-COLA\texttt{Hi-COLA}, we additionally run the first simulations of an extended shift-symmetric gravity theory. We use the consistency and modularity of Hi-COLA\texttt{Hi-COLA} to dissect how the modified background, linear growth, and screened fifth force all contribute to departures from Λ\LambdaCDM in the non-linear matter power spectrum. Hi-COLA\texttt{Hi-COLA} can be found at https://github.com/Hi-COLACode/Hi-COLA .

Keywords

Cite

@article{arxiv.2209.01666,
  title  = {$\texttt{Hi-COLA}$: Fast, approximate simulations of structure formation in Horndeski gravity},
  author = {Bill S. Wright and Ashim Sen Gupta and Tessa Baker and Georgios Valogiannis and Bartolomeo Fiorini},
  journal= {arXiv preprint arXiv:2209.01666},
  year   = {2023}
}

Comments

51 pages, 20 figures, 5 tables, comments welcome. Updated to match the version published in JCAP