A Spectroscopically Confirmed Excess of 24 micron Sources in a Super Galaxy Group at z=0.37: Enhanced Dusty Star Formation Relative to the Cluster and Field Environment
arXiv:0909.4079 · doi:10.1088/0004-637X/705/1/809
Abstract
To trace how dust-obscured star formation varies with environment, we compare the fraction of 24 micron sources in a super galaxy group to the field and a rich galaxy cluster at z~0.35. We draw on multi-wavelength observations that combine Hubble, Chandra, and Spitzer imaging with extensive optical spectroscopy (>1800 redshifts) to isolate galaxies in each environment and thus ensure a uniform analysis. We focus on the four galaxy groups in supergroup 1120-12 that will merge to form a galaxy cluster comparable in mass to Coma. We find that 1) the fraction of supergroup galaxies with SFR(IR)>3 Msun/yr is four times higher than in the cluster (32% vs. 7%); 2) the supergroup's infrared luminosity function confirms that it has a higher density of IR members compared to the cluster and includes bright IR sources not found in galaxy clusters at z<0.35; and 3) there is a strong trend of decreasing IR fraction with increasing galaxy density, i.e. an IR-density relation, not observed in the cluster. These dramatic differences are surprising because the early-type fraction in the supergroup is already as high as in clusters, i.e. the timescales for morphological transformation cannot be strongly coupled to when the star formation is completely quenched. The supergroup has a significant fraction (~17%) of luminous, low-mass, IR members that are outside the group cores (R>0.5 Mpc); once their star formation is quenched, most will evolve into faint red galaxies. Our analysis indicates that the supergroup's 24 micron population also differs from that in the field: 1) despite the supergroup having twice the fraction of E/S0s as the field, the fraction of IR galaxies is comparable in both environments, and 2) the supergroup's IR luminosity function has a higher L(IR)* than that previously measured for the field.
Accepted by the Astrophysical Journal
References in corpus (32)
- K-corrections and filter transformations in the ultraviolet, optical, and near infrared
- Galaxy Groups in the SDSS DR4: I. The Catalogue and Basic Properties
- Ram pressure stripping the hot gaseous halos of galaxies in groups and clusters
- An Ultraviolet-to-Radio Broadband Spectral Atlas of Nearby Galaxies
- Strangulation in Galaxy Groups
- The DEEP2 Galaxy Redshift Survey: The Role of Galaxy Environment in the Cosmic Star-Formation History
- The build-up of the colour-magnitude relation in galaxy clusters since z~0.8
- The STAGES view of red spirals and dusty red galaxies: Mass-dependent quenching of star-formation in cluster infall
- Spitzer's Contribution to the AGN Population
- Evolution of the Color-Magnitude Relation in Galaxy Clusters at z ~1 from the ACS Intermediate Redshift Cluster Survey
- The relation between star formation, morphology and local density in high redshift clusters and groups
- The environments of starburst and post-starburst galaxies at z=0.4-0.8
- Environmentally-Driven Evolution of Simulated Cluster Galaxies
- HAWK-I imaging of the X-ray luminous galaxy cluster XMMU J2235.3-2557: The red sequence at z=1.39
- The Distribution of AGN in Clusters of Galaxies
- Galaxy Evolution in Hickson Compact Groups: The Role of Ram Pressure Stripping and Strangulation
- Spitzer/MIPS 24um Observations of Galaxy Clusters: An Increasing Fraction of Obscured Star-forming Members from z=0.02 to z=0.83
- IR observations of MS 1054-03: Star Formation and its Evolution in Rich Galaxy Clusters
- Mass-Selection and the Evolution of the Morphology-Density Relation from z=0.8 to z=0
- The colour of galaxies in distant groups
- First Measurement of a Rapid Increase in the AGN Fraction in High-Redshift Clusters of Galaxies
- The evolution of the galaxy Red Sequence in simulated clusters and groups
- The Complex Structure of the Cl 1604 Supercluster at z~0.9
- The Evolution of Dusty Star Formation and Stellar Mass Assembly in Clusters: Results from the IRAC 3.6um, 4.5um, 5.8um and 8.0um Cluster Luminosity Functions
- The IR Luminosity Functions of Rich Clusters
- Mapping dusty star formation in and around a cluster at z=0.81 by wide-field imaging with AKARI
- The Red Sequence Luminosity Function in Massive Intermediate Redshift Galaxy Clusters
- The Late Stellar Assembly of Massive Cluster Galaxies Via Major Merging
- A Deficit of Faint Red Galaxies in the Possible Large-Scale Structures around the RDCS J1252.9-2927 Cluster at z=1.24
- Unveiling the Important Role of Groups in the Evolution of Massive Galaxies: Insights from an Infrared Passive Sequence at Intermediate Redshift
- Chandra Observations of the Cl1604 Supercluster at z=0.9: Evidence for an Overdensity of Active Galactic Nuclei
- Forming Early-type Galaxies in Groups Prior to Cluster Assembly
Cited by in corpus (51)
- Galaxy evolution in groups and clusters: satellite star formation histories and quenching timescales in a hierarchical Universe
- Reversal of Fortune: Confirmation of an Increasing Star Formation-Density Relation in a Cluster at z=1.62
- The Era of Star Formation in Galaxy Clusters
- On the evolution and environmental dependence of the star formation rate versus stellar mass relation since z~2
- HerMES: Cosmic Infrared Background Anisotropies and the Clustering of Dusty Star-Forming Galaxies
- The Dawn of the Red: Star formation histories of group galaxies over the past 5 billion years
- A Comparative Study of Density Field Estimation for Galaxies: New Insights into the Evolution of Galaxies with Environment in COSMOS out to z~3
- Cosmic Web and Star Formation Activity in Galaxies at z~1
- From voids to filaments: environmental transformations of galaxies in the SDSS
- The Star Formation Rate-Density Relation at 0.6<z<0.9 and the Role of Star Forming Galaxies
- Panoramic H-alpha and mid-infrared mapping of star formation in a z=0.8 cluster
- Observations of environmental quenching in groups in the 11 Gyr since z=2.5: different quenching for central and satellite galaxies
- The Physical Origins of The Morphology-Density Relation: Evidence for Gas Stripping from the SDSS
- The Assembly of the Red Sequence at z~1: The Color and Spectral Properties of Galaxies in the Cl1604 Supercluster
- CANDELS Observations of the Environmental Dependence of the Color-Mass-Morphology Relation at z = 1.6
- From Voids to Coma: the prevalence of pre-processing in the local Universe
- The evolution of the star formation activity per halo mass up to redshift ~ 1.6 as seen by Herschel
- The Environmental Dependence of the Evolving S0 Fraction
- The effect of environment on star forming galaxies at redshift 1 - First insight from PACS
- On the Gas Content, Star Formation Efficiency, and Environmental Quenching of Massive Galaxies in Proto-Clusters at z~2.0-2.5
- GASP. XVI. Does cosmic web enhancement turn on star formation in galaxies?
- Red Star Forming Galaxies and Their Environment at z=0.4 Revealed by Panoramic H-alpha Imaging
- Dust-Obscured Star-Formation in Intermediate Redshift Galaxy Clusters
- Star formation in the cluster CLG0218.3-0510 at z=1.62 and its large-scale environment: the infrared perspective
- The Phase Space of z~1.2 SpARCS Clusters: Using Herschel to probe Dust Temperature as a Function of Environment and Accretion History
- Star Formation in the Bullet Cluster I: The Infrared Luminosity Function and Star Formation Rate
- The impact of a major cluster merger on galaxy evolution in MACS\,J0025.4-1225
- Early Science with the Large Millimeter Telescope: COOL BUDHIES I - a pilot study of molecular and atomic gas at z~0.2
- SPITZER observations of Abell 1763. III. The infrared luminosity function in different supercluster environments
- Dust emission and star formation in Stephan's Quintet
- The lack of star formation gradients in galaxy groups up to z~1.6
- HR-Cosmos: Kinematics of Star-Forming Galaxies at z 0.9
- The Chandra Deep Group Survey -- cool core evolution in groups and clusters of galaxies
- The Cosmic Web and galaxy evolution around the most luminous X-ray cluster: RXJ1347.5-1145
- The evolution of galaxy star formation activity in massive halos
- The First Mid-IR View of the Star-forming Properties of Nearby Galaxy Groups
- Stellar Mass and Velocity Functions of Galaxies: Backward evolution and the fate of Milky Way siblings
- A WISE View of a Nearby Supercluster A2199
- AKARI Observation of the North Ecliptic Pole (NEP) Supercluster at z = 0.087: mid-infrared view of transition galaxies
- The Herschel Filament: a signature of the environmental drivers of galaxy evolution during the assembly of massive clusters at z=0.9
- Submillimetre observations of galaxy clusters with BLAST: the star-formation activity in Abell 3112
- The Ursa Major cluster redefined as a `supergroup'
- A Search for Young Stars in the S0 Galaxies of a Super-Group at z=0.37
- Pre-processing of Galaxies in the Early Stages of Cluster Formation in Abell 1882 at =0.139
- Herschel-ATLAS/GAMA:How does the far-IR luminosity function depend on galaxy group properties?
- Environmental dependence of 8um luminosity functions of galaxies at z~0.8: Comparison between RXJ1716.4+6708 and the AKARI NEP deep field
- The Nature of Star Formation at 24 microns in the Group Environment at 0.3 < z < 0.55
- Detection of Outflowing and Extraplanar Gas in Disks in an Assembling Galaxy Cluster at z=0.37
- The mass distribution in an assembling super galaxy group at
- SG1120-1202: Mass-Quenching as Tracked by UV Emission in the Group Environment at z=0.37
- Environmental dependence of polycyclic aromatic hydrocarbon emission at z~0.8. Investigation by observing the RX J0152.7-1357 with AKARI