English

Taming assembly bias for primordial non-Gaussianity

Cosmology and Nongalactic Astrophysics 2024-02-27 v2

Abstract

Primordial non-Gaussianity of the local type induces a strong scale-dependent bias on the clustering of halos in the late-time Universe. This signature is particularly promising to provide constraints on the non-Gaussianity parameter fNLf_{\rm NL} from galaxy surveys, as the bias amplitude grows with scale and becomes important on large, linear scales. However, there is a well-known degeneracy between the real prize, the fNLf_{\rm NL} parameter, and the (non-Gaussian) assembly bias i.e., the halo formation history-dependent contribution to the amplitude of the signal, which could seriously compromise the ability of large-scale structure surveys to constrain fNLf_{\rm NL}. We show how the assembly bias can be modeled and constrained, thus almost completely recovering the power of galaxy surveys to competitively constrain primordial non-Gaussianity. In particular, studying hydrodynamical simulations, we find that a proxy for the halo properties that determine assembly bias can be constructed from photometric properties of galaxies. Using a prior on the assembly bias guided by this proxy degrades the statistical errors on fNLf_{\rm NL} only mildly compared to an ideal case where the assembly bias is perfectly known. The systematic error on fNLf_{\rm NL} that the proxy induces can be safely kept under control.

Keywords

Cite

@article{arxiv.2311.10088,
  title  = {Taming assembly bias for primordial non-Gaussianity},
  author = {Emanuele Fondi and Licia Verde and Francisco Villaescusa-Navarro and Marco Baldi and William R. Coulton and Gabriel Jung and Dionysios Karagiannis and Michele Liguori and Andrea Ravenni and Benjamin D. Wandelt},
  journal= {arXiv preprint arXiv:2311.10088},
  year   = {2024}
}

Comments

30 pages, 13 figures. v2: minor updates to match accepted version