The MillenniumTNG Project: an improved two-halo model for the galaxy–halo connection of red and blue galaxies

Author:

Hadzhiyska Boryana123ORCID,Eisenstein Daniel1ORCID,Hernquist Lars1,Pakmor Rüdiger4ORCID,Bose Sownak5ORCID,Delgado Ana Maria1,Contreras Sergio6ORCID,Kannan Rahul17ORCID,White Simon D M4ORCID,Springel Volker4ORCID,Frenk Carlos5,Hernández-Aguayo César48ORCID,Barrera Fulvio Ferlito and Monica4

Affiliation:

1. Harvard-Smithsonian Center for Astrophysics , 60 Garden St, Cambridge, MA 02138 , USA

2. Miller Institute for Basic Research in Science, University of California , Berkeley, CA 94720 , USA

3. Physics Division, Lawrence Berkeley National Laboratory , Berkeley, CA 94720 , USA

4. Max-Planck-Institut für Astrophysik , Karl-Schwarzschild-Str 1, D-85748 Garching , Germany

5. Institute for Computational Cosmology, Department of Physics, Durham University , South Road, Durham DH1 3LE , UK

6. Donostia International Physics Center (DIPC) , Donostia-San Sebastian, Manuel Lardizabal Ibilbidea, 4, 20018 , Spain

7. Department of Physics and Astronomy, York University , 4700 Keele St, Toronto, ON MJ3 1P3 , Canada

8. Excellence Cluster ORIGINS , Boltzmannstrasse 2, D-85748 Garching , Germany

Abstract

ABSTRACT Approximate methods to populate dark-matter haloes with galaxies are of great utility to galaxy surveys. However, the limitations of simple halo occupation models (HODs) preclude a full use of small-scale galaxy clustering data and call for more sophisticated models. We study two galaxy populations, luminous red galaxies (LRGs) and star-forming emission-line galaxies (ELGs), at two epochs, z = 1 and z = 0, in the large-volume, high-resolution hydrodynamical simulation of the MillenniumTNG project. In a partner study we concentrated on the small-scale, one-halo regime down to r ∼ 0.1 h−1 Mpc, while here we focus on modelling galaxy assembly bias in the two-halo regime, r ≳ 1 h−1 Mpc. Interestingly, the ELG signal exhibits scale dependence out to relatively large scales (r ∼ 20 h−1 Mpc), implying that the linear bias approximation for this tracer is invalid on these scales, contrary to common assumptions. The 10–15 per cent discrepancy is only reconciled when we augment our halo occupation model with a dependence on extrinsic halo properties (‘shear’ being the best-performing one) rather than intrinsic ones (e.g. concentration, peak mass). We argue that this fact constitutes evidence for two-halo galaxy conformity. Including tertiary assembly bias (i.e. a property beyond mass and ‘shear’) is not an essential requirement for reconciling the galaxy assembly bias signal of LRGs, but the combination of external and internal properties is beneficial for recovering ELG the clustering. We find that centrals in low-mass haloes dominate the assembly bias signal of both populations. Finally, we explore the predictions of our model for higher order statistics such as nearest neighbour counts. The latter supplies additional information about galaxy assembly bias and can be used to break degeneracies between halo model parameters.

Funder

DFG

NSF

UKRI

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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