The Observed Evolution of the Stellar Mass - Halo Mass Relation for Brightest Central Galaxies
Abstract
We quantify evolution in the cluster scale stellar mass - halo mass (SMHM) relation's parameters using 2323 clusters and brightest central galaxies (BCGs) over the redshift range . The precision on inferred SMHM parameters is improved by including the magnitude gap () between the BCG and fourth brightest cluster member (M14) as a third parameter in the SMHM relation. At fixed halo mass, accounting for , through a stretch parameter, reduces the SMHM relation's intrinsic scatter. To explore this redshift range, we use clusters, BCGs, and cluster members identified using the Sloan Digital Sky Survey C4 and redMaPPer cluster catalogs and the Dark Energy Survey redMaPPer catalog. Through this joint analysis, we detect no systematic differences in BCG stellar mass, , and cluster mass (inferred from richness) between the datsets. We utilize the Pareto function to quantify each parameter's evolution. We confirm prior findings of negative evolution in the SMHM relation's slope (3.5) and detect negative evolution in the stretch parameter (4.0) and positive evolution in the offset parameter (5.8). This observed evolution, combined with the absence of BCG growth, when stellar mass is measured within 50kpc, suggests that this evolution results from changes in the cluster's . For this to occur, late-term growth must be in the intra-cluster light surrounding the BCG. We also compare the observed results to Illustris TNG 300-1 cosmological hydrodynamic simulations and find modest qualitative agreement. However, the simulations lack the evolutionary features detected in the real data.
Keywords
Cite
@article{arxiv.2107.02197,
title = {The Observed Evolution of the Stellar Mass - Halo Mass Relation for Brightest Central Galaxies},
author = {Jesse B. Golden-Marx and C. J. Miller and Y. Zhang and R. L. C. Ogando and A. Palmese and T. M. C. Abbott and M. Aguena and S. Allam and F. Andrade-Oliveira and J. Annis and D. Bacon and E. Bertin and D. Brooks and E. Buckley-Geer and A. Carnero Rosell and M. Carrasco Kind and F. J. Castander and M. Constanzi and M. Crocce and L. N. da Costa and M. E. S. Pereira and J. de Vicente and S. Desai and H. T. Diehl and P. Doel and A. Drlica-Wagner and S. Everett and A. E. Evrard and I. Ferrero and B. Flaugher and P. Fosalba and J. Frieman and J. Garcia-Bellido and E. Gaztanaga and D. W. Gerdes and D. Gruen and R. A. Gruendl and J. Gschwend and G. Gutierrez and W. G. Hartley and S. R. Hinton and D. L. Hollowood and K. Honscheid and B. Hoyle and D. J. James and T. Jeltema and A. G. Kim and E. Krause and K. Kuehn and N. Kuropatkin and O. Lahav and M. Lima and M. A. G. Maia and J. L. Marshall and P. Melchior and F. Menanteau and R. Miquel and J. J. Mohr and R. Morgan and F. Paz-Chinchon and D. Petravick and A. Pieres and A. A. Plazas Malagon and J. Prat and A. K. Romer and E. Sanchez and B. Santiago and V. Scarpine and M. Schubnell and S. Serrano and I. Sevilla-Noarbe and M. Smith and M. Soares-Santos and E. Suchyta and G. Tarle and T. N. Varga},
journal= {arXiv preprint arXiv:2107.02197},
year = {2022}
}
Comments
21 pages, 12 Figures, 3 Tables. Submitted to ApJ on July 1