The cosmic environment overtakes the local density in shaping galaxy star formation
arXiv:2112.06466 · doi:10.1093/mnras/stab3633
Abstract
The gas supply from the cosmic web is the key to sustain star formation in galaxies. It remains to be explored how the cosmic large-scale structure (LSS) effects on galaxy evolution at given local environments. We examine galaxy specific star formation rate as a function of local density in a LSS at in the Extended Chandra Deep Field South. The LSS is mapped by 732 galaxies with \,mag and redshift at collected from the literature and our spectroscopic observations with Magellan/IMACS, consisting of five galaxy clusters/groups and surrounding filaments over an area of \,co-moving\,Mpc. The spread of spectroscopic redshifts corresponds a velocity dispersion of 494\,km\,s, indicating the LSS likely to be a thin sheet with a galaxy density times that of the general field. These clusters/groups in this LSS mostly exhibit elongated morphologies and multiple components connected with surrounding filaments. Strikingly, we find that star-forming galaxies in the LSS keep star formation at the same level as field, and show no dependence on local density but stellar mass. Meanwhile, an increasing fraction of quiescent galaxies is detected at increasing local density in both the LSS and the field, consistent with the expectation that galaxy mass and local dense environment hold the key to quench star formation. Combined together, we conclude that the cosmic environment of the LSS overtakes the local environment in remaining galaxy star formation to the level of the field.
14 pages, 13 figures, Accepted for publication in MNRAS
References in corpus (30)
- Mass and environment as drivers of galaxy evolution in SDSS and zCOSMOS and the origin of the Schechter function
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- The Chandra Deep Field-South Survey: 7 Ms Source Catalogs
- An Objective Definition for the Main Sequence of Star-Forming Galaxies
- Bimodal gas accretion in the Horizon-MareNostrum galaxy formation simulation
- The stellar masses of 25000 galaxies at 0.2<z<1.0 estimated by the COMBO-17 survey
- The DEEP2 Galaxy Redshift Survey: The Role of Galaxy Environment in the Cosmic Star-Formation History
- The Multiwavelength Survey by Yale-Chile (MUSYC): Deep Medium-Band optical imaging and high quality 32-band photometric redshifts in the ECDF-S
- Star formation sustained by gas accretion
- The relation between star formation, morphology and local density in high redshift clusters and groups
- Star formation quenching in simulated group and cluster galaxies: When, how, and why?
- A Near-Infrared Spectroscopic Survey of K-selected Galaxies at z~2.3: Redshifts and Implications for Broadband Photometric Studies
- From voids to filaments: environmental transformations of galaxies in the SDSS
- Contribution of stripped nuclear clusters to globular cluster and ultra-compact dwarf galaxy populations
- The GOGREEN Survey: A deep stellar mass function of cluster galaxies at 1.0<z<1.4 and the complex nature of satellite quenching
- Mass-Selection and the Evolution of the Morphology-Density Relation from z=0.8 to z=0
- The environmental dependence of gas accretion onto galaxies: quenching satellites through starvation
- The star formation activity in cosmic voids
- A WFC3 Grism Emission Line Redshift Catalog in the GOODS-South Field
- Large Scale Structures in the CANDELS Fields: The Role of the Environment in Star Formation Activity
- Evidence for HI replenishment in massive galaxies through gas accretion from the cosmic web
- The Effect of Filaments and Tendrils on the HI Content of Galaxies
- Virgo Filaments I: Processing of gas in cosmological filaments around the Virgo cluster
- The effect of cosmic web filaments on the properties of groups and their central galaxies
- From large-scale environment to CGM angular momentum to star forming activities -- I: star-forming galaxies
- A new (2+1)D cluster finding algorithm based on photometric redshifts: large scale structure in the Chandra Deep Field South
- Long Tidal Tails in Merging Galaxies and Their Implications
- The XXL Survey: XXXVII. The role of the environment in shaping the stellar population properties of galaxies at 0.1<z<0.5
- The evolution of baryonic mass function of galaxies to z=3
- Effect of the environment on star formation activity and stellar mass for star-forming galaxies in the COSMOS field