Evidence of Environmental Quenching at Redshift z ~ 2
arXiv:1806.04142 · doi:10.3847/1538-4357/aacc2c
Abstract
We report evidence of environmental quenching among galaxies at redshift ~ 2, namely the probability that a galaxy quenches its star formation activity is enhanced in the regions of space in proximity of other quenched, more massive galaxies. The effect is observed as strong clustering of quiescent galaxies around quiescent galaxies on angular scales θ< 20 arcsec, corresponding to a proper(comoving) scale of 168 (502) kpc at z = 2. The effect is observed only for quiescent galaxies around other quiescent galaxies; the probability to find star-forming galaxies around quiescent or around star-forming ones is consistent with the clustering strength of galaxies of the same mass and at the same redshift, as observed in dedicated studies of galaxy clustering. The effect is mass dependent in the sense that the quenching probability is stronger for galaxies of smaller mass () than for more massive ones, i.e. it follows the opposite trend with mass relative to gravitational galaxy clustering. The spatial scale where the effect is observed suggests these environments are massive halos, in which case the observed effect would likely be satellite quenching. The effect is also redshift dependent in that the clustering strength of quiescent galaxies around other quiescent galaxies at z = 1.6 is ~ 1.7 times larger than that of the galaxies with the same stellar mass at z = 2.6. This redshift dependence allows for a crude estimate of the time scale of environmental quenching of low-mass galaxies, which is in the range 1.5 - 4 Gyr, in broad agreement with other estimates and with our ideas on satellite quenching.
12 pages, 9 figures, Accepted for publication in ApJ
References in corpus (19)
- Mass and environment as drivers of galaxy evolution in SDSS and zCOSMOS and the origin of the Schechter function
- EAZY: A Fast, Public Photometric Redshift Code
- Detection of quiescent galaxies in a bicolor sequence from z=0-2
- Galaxy Zoo: the dependence of morphology and colour on environment
- Strangulation as the primary mechanism for shutting down star formation in galaxies
- Structure and star formation in galaxies out to z=3: evidence for surface density dependent evolution and upsizing
- The Importance of Satellite Quenching for the Build-Up of the Red Sequence of Present Day Galaxies
- Stellar masses from the CANDELS survey: the GOODS-South and UDS fields
- The DEEP2 Galaxy Redshift Survey: Evolution of the Color-Density Relation at 0.4 < z < 1.35
- The VIMOS VLT Deep Survey: The build-up of the colour-density relation
- Effect of local environment and stellar mass on galaxy quenching and morphology at
- Predicting Quiescence: The Dependence of Specific Star Formation Rate on Galaxy Size and Central Density at 0.5<z<2.5
- A Connection Between Bulge Properties and the Bimodality of Galaxies
- Galaxy environment in the 3D-HST fields. Witnessing the onset of satellite quenching at z ~ 1-2
- Overconsumption, outflows and the quenching of satellite galaxies
- Mapping the Dark Matter From UV Light at High Redshift: An Empirical Approach to Understand Galaxy Statistics
- The Effects of Environment on the Evolution of the Galaxy Stellar Mass Function
- The intrinsic characteristics of galaxies on the SFR-stellar mass plane at 1.2<z<4: I. the correlation between stellar age, central density and position relative to the main sequence
- CANDELS Sheds Light on the Environmental Quenching of Low-mass Galaxies
Cited by in corpus (26)
- Hyper Suprime-Cam Subaru Strategic Program: A Mass-Dependent Slope of the Galaxy Size-Mass Relation at
- LoTSS jellyfish galaxies: I. Radio tails in low redshift clusters
- Mini-quenching of galaxies by bursty star formation
- Dissecting the size-mass and -mass relations at 1.0 < z < 2.5: galaxy mass profiles and color gradients as a function of spectral shape
- Large Scale Structures in the CANDELS Fields: The Role of the Environment in Star Formation Activity
- ALMA measures rapidly depleted molecular gas reservoirs in massive quiescent galaxies at z~1.5
- On the Gas Content, Star Formation Efficiency, and Environmental Quenching of Massive Galaxies in Proto-Clusters at z~2.0-2.5
- JADES + JEMS: A Detailed Look at the Buildup of Central Stellar Cores and Suppression of Star Formation in Galaxies at Redshifts 3 < z < 4.5
- Reconstructing the Assembly of Massive Galaxies. I: The Importance of the Progenitor Effect in the Observed Properties of Quiescent Galaxies at
- AGN Selection Methods Have Profound Impacts on the Distributions of Host Galaxy Properties
- Accelerated galaxy growth and environmental quenching in a protocluster at z=3.24
- The MOSDEF Survey: Environmental dependence of the gas-phase metallicity of galaxies at
- BIRTH of the COSMOS Field: Primordial and Evolved Density Reconstructions During Cosmic High Noon
- Molecular Gas Reservoirs in Massive Quiescent Galaxies at Linked to Late Time Star Formation
- Spectroscopic Confirmation of two Extremely Massive Protoclusters BOSS1244 and BOSS1542 at
- Large Scale Structures in COSMOS2020: Evolution of Star Formation Activity in Different Environments at 0.4 < z < 4
- A Systematic Search for Galaxy Proto-Cluster Cores at
- Reconstructing the Assembly of Massive Galaxies. II. Galaxies Develop Massive and Dense Stellar Cores as They Evolve and Head Toward Quiescence at Cosmic Noon
- SCUBA-2 Ultra Deep Imaging EAO Survey (STUDIES) IV: Spatial clustering and halo masses of 450-m-selected sub-millimeter galaxies
- The effect of environment on star formation activity and morphology at 0.5 < z < 2.5 in CANDELS
- When the Well Runs Dry: Modeling Environmental Quenching of High-mass Satellites in Massive Clusters at \boldmath
- JADES: Rest-frame UV-to-NIR Size Evolution of Massive Quiescent Galaxies from Redshift z=5 to z=0.5
- Implications of Increased Central Mass Surface Densities for the Quenching of Low-mass Galaxies
- Anatomy of galactic star formation history: Roles of different modes of gas accretion, feedback, and recycling
- Investigating the Dominant Environmental Quenching Process in UVCANDELS/COSMOS Groups
- Reconstructing the Assembly of Massive Galaxies. III: Quiescent Galaxies Loose Angular Momentum as They Evolve in a Mass-dependent Fashion