We test the convergence of fast simulations based on the COmoving Lagrangian Acceleration (COLA) method for predictions of the matter power spectrum, specialising our analysis in the redshift range 1≤z≤1.65, relevant to high-redshift spectroscopic galaxy surveys. We then focus on the enhancement of the matter power spectrum in modified gravity (MG), the boost factor, using the Dvali-Gabadadze-Porrati (DGP) theory as a test case but developing a general approach that can be applied to other MG theories. After identifying the minimal simulation requirements for accurate DGP boost factors, we design and produce a COLA simulation suite that we use to train a neural network emulator for the DGP boost factor. Using MG-AREPO simulations as a reference, we estimate the emulator accuracy to be of ∼3% up to k=5hMpc−1 at 0≤z≤2. We make the emulator publicly available at: https://github.com/BartolomeoF/nDGPemu.
@article{arxiv.2310.05786,
title = {Fast production of cosmological emulators in modified gravity: the matter power spectrum},
author = {Bartolomeo Fiorini and Kazuya Koyama and Tessa Baker},
journal= {arXiv preprint arXiv:2310.05786},
year = {2023}
}
Comments
24 pages, 17 figures, Comments are welcome - Accepted for publication in JCAP