Constraining the Stellar-to-Halo Mass Relation with Galaxy Clustering and Weak Lensing from DES Year 3 Data
Abstract
We develop a framework to study the relation between the stellar mass of a galaxy and the total mass of its host dark matter halo using galaxy clustering and galaxy-galaxy lensing measurements. We model a wide range of scales, roughly from to , using a theoretical framework based on the Halo Occupation Distribution and data from Year 3 of the Dark Energy Survey (DES) dataset. The new advances of this work include: 1) the generation and validation of a new stellar mass-selected galaxy sample in the range of to ; 2) the joint-modeling framework of galaxy clustering and galaxy-galaxy lensing that is able to describe our stellar mass-selected sample deep into the 1-halo regime; and 3) stellar-to-halo mass relation (SHMR) constraints from this dataset. In general, our SHMR constraints agree well with existing literature with various weak lensing measurements. We constrain the free parameters in the SHMR functional form , with , to be , , , and . The inferred average satellite fraction is within for our fiducial results and we do not see any clear trends with redshift or stellar mass. Furthermore, we find that the inferred average galaxy bias values follow the generally expected trends with stellar mass and redshift. Our study is the first SHMR in DES in this mass range, and we expect the stellar mass sample to be of general interest for other science cases.
Keywords
Cite
@article{arxiv.2506.22367,
title = {Constraining the Stellar-to-Halo Mass Relation with Galaxy Clustering and Weak Lensing from DES Year 3 Data},
author = {G. Zacharegkas and C. Chang and J. Prat and W. Hartley and S. Mucesh and A. Alarcon and O. Alves and A. Amon and K. Bechtol and M. R. Becker and G. Bernstein and J. Blazek and A. Campos and A. Carnero Rosell and M. Carrasco Kind and R. Cawthon and R. Chen and A. Choi and J. Cordero and C. Davis and J. Derose and H. Diehl and S. Dodelson and C. Doux and A. Drlica-Wagner and K. Eckert and T. F. Eifler and J. Elvin-Poole and S. Everett and X. Fang and A. Ferte and M. Gatti and G. Giannini and D. Gruen and R. A. Gruendl and I. Harrison and H. Huang and E. M. Huff and M. Jarvis and E. Krause and N. Kuropatkin and P. F. Leget and N. Maccrann and J. McCullough and J. Myles and A. N. Alsina and S. Pandey and M. Raveri and R. P. Rollins and A. Roodman and A. J. Ross and E. S. Rykoff and C. Sanchez and L. F. Secco and I. Sevilla-Noarbe and E. Sheldon and T. Shin and M. A. Troxel and I. Tutusaus and B. Yanny and B. Yin and Y. Zhang and J. Zuntz and M. Aguena and F. Andrade-Oliveira and D. Bacon and D. Brooks and D. L. Burke and J. Carretero and F. J. Castander and L. N. da Costa and M. E. da Silva Pereira and T. M. Davis and J. De Vicente and B. Flaugher and J. Frieman and J. Garcia-Bellido and E. Gaztanaga and G. Gutierrez and S. R. Hinton and D. L. Hollowood and D. J. James and K. Kuehn and O. Lahav and S. Lee and J. L. Marshall and J. Mena-Fernandez and R. Miquel and J. J. Mohr and R. L. C. Ogando and A. A. Plazas Malagon and A. Porredon and S. Samuroff and E. Sanchez and M. Smith and M. Soares-Santos and E. Suchyta and M. E. C. Swanson and D. L. Tucker and V. Vikram and N. Weaverdyck and P. Wiseman and M. Yamamoto},
journal= {arXiv preprint arXiv:2506.22367},
year = {2026}
}
Comments
35 pages, 6 appendices, 19 figures, 4 tables, Published in the Open Journal of Astrophysics