The satellite population around luminous red galaxies in the 25 square degree DESI Legacy Imaging Surveys Early Data Release
arXiv:2301.05210 · doi:10.1093/mnras/stad118
Abstract
Luminous Red Galaxies, or LRGs, are representative of the most massive galaxies and were originally selected in the Sloan Digital Sky Survey as good tracers of large scale structure. They are dominated by by uniformly old stellar populations, have low star formation rates, early type morphologies, and little cold gas. Despite having old stellar populations and little in situ star formation, studies have shown that they have grown their stellar mass since z=1, implying that they grow predominantly via the accretion of satellites. Tests of this picture have been limited because of the lack of deep imaging data sets that both covers a large enough area of the sky to contain substantial numbers of LRGs and that also is deep enough to detect faint satellites. We use the 25 square degree Early Data Release (EDR) of the DESI Legacy Imaging Surveys to characterize the satellite galaxy population of LRGs out to z=0.65. The DESI Legacy Imaging Surveys are comprised of grz imaging to 2-2.5 mag deeper than SDSS and with better image quality. We use a new statistical background technique to identify excess populations of putative satellite galaxies around 1823 LRGs at 0.2<z<0.65. In three redshift and luminosity bins we measure the numbers of satellite galaxies and their r- color distribution down to rest-frame -band luminosity limits at least 3.6 times fainter than L*. In addition, we develop a forward modeling technique and apply it to constrain the mean number of satellites in each of our redshift and luminosity bins. Finally, we use these estimates to determine the amount of stellar mass growth in LRGs down to the local Universe.
Accepted for publication in MNRAS. 20 pages, 9 figures and 2 tables in main text, 6 figures in appendix
References in corpus (10)
- The propagation of uncertainties in stellar population synthesis modeling I: The relevance of uncertain aspects of stellar evolution and the IMF to the derived physical properties of galaxies
- EAZY: A Fast, Public Photometric Redshift Code
- The hierarchical formation of the brightest cluster galaxies
- 3D-HST+CANDELS: The Evolution of the Galaxy Size-Mass Distribution since
- PRIMUS: Constraints on Star Formation Quenching and Galaxy Merging, and the Evolution of the Stellar Mass Function From z=0-1
- Size evolution of the most massive galaxies at 1.7<z<3 from GOODS NICMOS survey imaging
- The redshift evolution of early-type galaxies in COSMOS: Do massive early-type galaxies form by dry mergers?
- The Rest-Frame Optical Luminosity Function of Cluster Galaxies at z<0.8 and the Assembly of the Cluster Red Sequence
- Luminosity Function Constraints on the Evolution of Massive Red Galaxies Since z~0.9
- Suzaku Studies of the Central Engine in the Typical Type I Seyfert NGC 3227: Detection of Multiple Primary X-ray Continua with Distinct Properties