Denser Environments Cultivate Larger Galaxies: A Comprehensive Study beyond the Local Universe with 3 Million Hyper Suprime-Cam Galaxies
arXiv:2408.07128 · doi:10.3847/1538-4357/ad596f
Abstract
The relationship between galaxy size and environment has remained enigmatic, with over a decade of conflicting results. We present one of the first comprehensive studies of the variation of galaxy radius with environment beyond the local Universe and demonstrate that large-scale environmental density is correlated with galaxy radius independent of stellar mass and galaxy morphology. We confirm with confidence that galaxies in denser environments are up to larger than their equally massive counterparts with similar morphology in less dense regions of the Universe. We achieve this result by correlating projected two-dimensional densities over deg with the structural parameters of million Hyper Suprime-Cam galaxies at with . Compared to most previous studies, this sample is times larger and goes dex deeper in mass-completeness. We demonstrate that past conflicting results have been driven by small sample sizes and a lack of robust measurement uncertainties. We verify the presence of the above correlation separately for disk-dominated, bulge-dominated, star-forming, and quiescent subpopulations. We find the strength of the correlation to be dependent on redshift, stellar mass, and morphology. The correlation is strongest at lower redshifts and systematically weakens or disappears beyond . At , more massive galaxies still display a statistically significant correlation. Although some existing theoretical frameworks can be selectively invoked to explain some of the observed correlations, our work demonstrates the need for more comprehensive theoretical investigations of the correlation between galaxy size and environment.
29 pages, 13 figures. Published in The Astrophysical Journal. We welcome comments and constructive criticism
References in corpus (23)
- Array Programming with NumPy
- 3D-HST+CANDELS: The Evolution of the Galaxy Size-Mass Distribution since
- Galaxy Zoo: the dependence of morphology and colour on environment
- The Evolution of Galaxy Structure over Cosmic Time
- Assembly bias in the clustering of dark matter haloes
- A Revised Model for the Formation of Disk Galaxies: Low Spin and Dark-Halo Expansion
- Stellar Masses and SFRs for 1M Galaxies from SDSS and WISE
- Photometric Redshift with Bayesian Priors on Physical Properties of Galaxies
- Dense cores in galaxies out to z=2.5 in SDSS, UltraVISTA, and the five 3D-HST/CANDELS fields
- The Euclid mission design
- Mass-Selection and the Evolution of the Morphology-Density Relation from z=0.8 to z=0
- The SAMI Pilot Survey: The Kinematic Morphology-Density Relation in Abell 85, Abell 168 and Abell 2399
- HST/WFC3 grism observations of clusters: The cluster vs. field stellar mass-size relation and evidence for size growth of quiescent galaxies from minor mergers
- Galaxy Morphology Network: A Convolutional Neural Network Used to Study Morphology and Quenching in SDSS and CANDELS Galaxies
- Massive Galaxies are Larger in Dense Environments: Environmental Dependence of Mass-Size Relation of Early-Type Galaxies
- The Differential Size Growth of Field and Cluster Galaxies at z=2.1 Using the ZFOURGE Survey
- A New View of the Size-Mass Distribution of Galaxies: Using and instead of
- Probing the kinematic morphology-density relation of early-type galaxies with MaNGA
- Are ultra-diffuse galaxies Milky Way-sized?
- . I. Understanding galaxy sizes, associated luminosity densities, and the artificial division of the early-type galaxy population
- Subaru Hyper Suprime-Cam revisits the large-scale environmental dependence on galaxy morphology over 360 deg at z=0.3-0.6
- GaMPEN: A Machine Learning Framework for Estimating Bayesian Posteriors of Galaxy Morphological Parameters
- Subaru Hyper Suprime-Cam excavates colossal over- and under-dense structures over 360 deg2 out to z=1