English

CoLoRe: fast cosmological realisations over large volumes with multiple tracers

Cosmology and Nongalactic Astrophysics 2022-05-18 v2

Abstract

We present CoLoRe, a public software package to efficiently generate synthetic realisations of multiple cosmological surveys. CoLoRe can simulate the growth of structure with different degrees of accuracy, with the current implementation supporting lognormal fields, first, and second order Lagrangian perturbation theory. CoLoRe simulates the density field on an all-sky light-cone up to a desired maximum redshift, and uses it to generate multiple 2D and 3D maps: galaxy positions and velocities, lensing (shear, magnification, convergence), integrated Sachs-Wolfe effect, line intensity mapping, and line of sight skewers for simulations of the Lyman-α\alpha forest. We test the accuracy of the simulated maps against analytical theoretical predictions, and showcase its performance with a multi-survey simulation including DESI galaxies and quasars, LSST galaxies and lensing, and SKA intensity mapping and radio galaxies. We expect CoLoRe to be particularly useful in studies aiming to characterise the impact of systematics in multi-experiment analyses, quantify the covariance between different datasets, and test cross-correlation pipelines for near-future surveys.

Keywords

Cite

@article{arxiv.2111.05069,
  title  = {CoLoRe: fast cosmological realisations over large volumes with multiple tracers},
  author = {César Ramírez-Pérez and Javier Sanchez and David Alonso and Andreu Font-Ribera},
  journal= {arXiv preprint arXiv:2111.05069},
  year   = {2022}
}

Comments

Accepted for publication in JCAP. Minor changes with respect to v1 and updated list of references. Code available at https://github.com/damonge/CoLoRe

R2 v1 2026-06-24T07:32:05.343Z