The impact of galaxy bias on cross-correlation tomography

Fuente: arXiv
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Autores principales: Maleubre, Sara, Zennaro, Matteo, Alonso, David, McCarthy, Ian, Schaller, Matthieu, Schaye, Joop
Formato: Preprint
Publicado: 2025
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author Maleubre, Sara
Zennaro, Matteo
Alonso, David
McCarthy, Ian
Schaller, Matthieu
Schaye, Joop
author_facet Maleubre, Sara
Zennaro, Matteo
Alonso, David
McCarthy, Ian
Schaller, Matthieu
Schaye, Joop
contents The cross-correlation of galaxies at different redshifts with other tracers of the large-scale structure can be used to reconstruct the cosmic mean of key physical quantities, and their evolution over billions of years, at high precision. However, a correct interpretation of these measurements must ensure that they are independent of the clustering properties of the galaxy sample used. In this paper we explore different prescriptions to extract tomographic reconstruction measurements and use the FLAMINGO hydrodynamic simulations to show that a robust estimator, independent of the small-scale galaxy bias, can be constructed. We focus on the tomographic reconstruction of the halo bias-weighted electron pressure $\langle bP_e\rangle$ and star-formation density $\langle bρ_{\rm SFR}\rangle$, which can be reconstructed from tomographic analysis of Sunyaev-Zel'dovich and cosmic infrared background maps, respectively. We show that these quantities can be reconstructed with an accuracy of 1-3\% over a wide range of redshifts, using different galaxy samples. We also show that these measurements can be accurately interpreted using the halo model, assuming a sufficiently reliable model can be constructed for the halo mass function, large-scale halo bias, and for the dependence of the physical quantities being reconstructed on halo mass.
format Preprint
id arxiv_https___arxiv_org_abs_2508_05319
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The impact of galaxy bias on cross-correlation tomography
Maleubre, Sara
Zennaro, Matteo
Alonso, David
McCarthy, Ian
Schaller, Matthieu
Schaye, Joop
Cosmology and Nongalactic Astrophysics
Astrophysics of Galaxies
The cross-correlation of galaxies at different redshifts with other tracers of the large-scale structure can be used to reconstruct the cosmic mean of key physical quantities, and their evolution over billions of years, at high precision. However, a correct interpretation of these measurements must ensure that they are independent of the clustering properties of the galaxy sample used. In this paper we explore different prescriptions to extract tomographic reconstruction measurements and use the FLAMINGO hydrodynamic simulations to show that a robust estimator, independent of the small-scale galaxy bias, can be constructed. We focus on the tomographic reconstruction of the halo bias-weighted electron pressure $\langle bP_e\rangle$ and star-formation density $\langle bρ_{\rm SFR}\rangle$, which can be reconstructed from tomographic analysis of Sunyaev-Zel'dovich and cosmic infrared background maps, respectively. We show that these quantities can be reconstructed with an accuracy of 1-3\% over a wide range of redshifts, using different galaxy samples. We also show that these measurements can be accurately interpreted using the halo model, assuming a sufficiently reliable model can be constructed for the halo mass function, large-scale halo bias, and for the dependence of the physical quantities being reconstructed on halo mass.
title The impact of galaxy bias on cross-correlation tomography
topic Cosmology and Nongalactic Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2508.05319