Probing the galaxy-halo connection in UltraVISTA to $z\sim2$
H. J. McCracken, M. Wolk, S. Colombi, M. Kilbinger, O. Ilbert, S., Peirani, J.Coupon, J. Dunlop, B. Milvang-Jensen, K. Caputi, H. Aussel, M., B\'ethermin, O. Le F\`evre

TL;DR
This study uses precise photometric redshifts from UltraVISTA to explore how galaxy stellar mass relates to dark matter haloes up to redshift 2, revealing consistent halo mass-stellar mass ratios and evolving clustering properties.
Contribution
It provides the first comprehensive analysis of the galaxy-halo connection across a wide stellar mass and redshift range using high-precision data and phenomenological modeling.
Findings
Clustering amplitude depends on stellar mass threshold.
Projected clustering decreases with redshift, but co-moving correlation length remains constant.
Characteristic halo masses increase with stellar mass.
Abstract
We use percent-level precision photometric redshifts in the UltraVISTA-DR1 near-infrared survey to investigate the changing relationship be- tween galaxy stellar mass and the dark matter haloes hosting them to . We achieve this by measuring the clustering properties and abundances of a series of volume-limited galaxy samples selected by stellar mass and star-formation activity. We interpret these results in the framework of a phenomenological halo model and numerical simulations. Our measurements span a uniquely large range in stellar mass and redshift and reach below the characteristic stellar mass to . Our results are: 1. At fixed redshift and scale, clustering amplitude depends monotonically on sample stellar mass threshold; 2. At fixed angular scale, the projected clustering amplitude decreases with redshift but the co-moving correlation length remains constant; 3.…
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