English

Multi-probe cosmology forecasts from HOD-based forward modeling of galaxy and void statistics

Cosmology and Nongalactic Astrophysics 2025-04-14 v1

Abstract

The large under-dense regions in the cosmological matter density field, known as cosmic voids, are powerful probes of cosmology but their potential is currently under-exploited. Observationally, voids are identified within the large scale distribution of galaxies and are therefore sensitive to certain features of the galaxy-halo connection. This sensitivity makes the combination of void and galaxy summary statistics particularly powerful probes of both cosmology and the galaxy-halo connection through self-calibration of the void-galaxy relation. In particular the combination of void and galaxy summary statistics breaks degeneracies in the galaxy-halo connection and cosmology relative to the case of galaxy clustering alone. To demonstrate this we forecast cosmological constraints attainable from the combination of the void size function nvn_v, projected void-galaxy cross-correlation function wp,vgw_{p,vg} and projected galaxy auto-correlation function wp,ggw_{p,gg} measured in Dark Energy Spectroscopic Instrument (DESI) Year 5 data. We use a grid of cosmological N-body simulations to model this datavector as a function of σ8\sigma_8, Ωm\Omega_m and a flexible halo occupation distribution (HOD) model that includes central and satellite galaxy assembly bias. For our fiducial scenario combining nvn_v, wp,vgw_{p,vg} and wp,ggw_{p,gg} we forecast 1.5%1.5\% and 0.8%0.8\% constraints on Ωm\Omega_m and σ8\sigma_8 from DESI-Y5 data. We also forecast constraints from the combination of the void size function and stacked weak lensing signal of voids.

Keywords

Cite

@article{arxiv.2504.08221,
  title  = {Multi-probe cosmology forecasts from HOD-based forward modeling of galaxy and void statistics},
  author = {Andrés N. Salcedo and Alice Pisani and Nico Hamaus},
  journal= {arXiv preprint arXiv:2504.08221},
  year   = {2025}
}

Comments

20 pages, 8 main figures, 3 tables, 1 appendix figure. Submitted to PRD

R2 v1 2026-06-28T22:54:23.789Z