The slowly evolving role of environment in a spectroscopic survey of star formation in Mstar > 5E8 Msun galaxies since z=1
arXiv:1207.0972 · doi:10.1111/j.1365-2966.2012.21654.x
Abstract
We present a deep [OII] emission line survey of faint galaxies (22.5<KAB<24) in the Chandra Deep Field South and the FIRES field. With these data we measure the star formation rate (SFR) in galaxies in the stellar mass range 8.85 < log(M*/Msun) < 9.5 at 0.62<z<0.885, to a limit of SFR = 0.1Msun/yr. The presence of a massive cluster (MS1054-03) in the FIRES field, and of significant large scale structure in the CDFS field, allows us to study the environmental dependence of SFRs amongst this population of low-mass galaxies. Comparing our results with more massive galaxies at this epoch, with our previous survey (ROLES) at the higher redshift z=1, and with SDSS Stripe 82 data, we find no significant evolution of the stellar mass function of star-forming galaxies between z=0 and z=1, and no evidence that its shape depends on environment. The correlation between specific star formation rate (sSFR) and stellar mass at z=0.75 has a power-law slope of beta=-0.2, with evidence for a steeper relation at the lowest masses. The normalization of this correlation lies as expected between that corresponding to z=1 and the present day. The global SFR density is consistent with an evolution of the form (1+z)^2 over 0<z<1, with no evidence for a dependence on stellar mass. The sSFR of these star-forming galaxies at z=0.75 does not depend upon the density of their local environment. Considering just high-density environments, the low-mass end of the sSFR-M* relation in our data is steeper than that in Stripe 82 at z=0, and shallower than that measured by ROLES at z=1. Evolution of low-mass galaxies in dense environments appears to be more rapid than in the general field.
16 pages including 19 figures. MNRAS, accepted July 4 2012
References in corpus (22)
- Mass and environment as drivers of galaxy evolution in SDSS and zCOSMOS and the origin of the Schechter function
- The star formation history of mass-selected galaxies in the COSMOS field
- Star formation in AEGIS field galaxies since z=1.1 . Staged galaxy formation, and a model of mass-dependent gas exhaustion
- The Gemini Deep Deep Survey: III. The abundance of massive galaxies 3-6 billion years after the Big Bang
- The Gemini Cluster Astrophysics Spectroscopic Survey (GCLASS): The Role of Environment and Self-Regulation in Galaxy Evolution at z ~ 1
- The DEEP2 Galaxy Redshift Survey: The Role of Galaxy Environment in the Cosmic Star-Formation History
- Star Formation and the Growth of Stellar Mass
- Measures of Galaxy Environment - I. What is "Environment"?
- The STAGES view of red spirals and dusty red galaxies: Mass-dependent quenching of star-formation in cluster infall
- What Shapes the Galaxy Mass Function? Exploring the Roles of Supernova-Driven Winds and AGN
- Galaxies in X-ray Groups I: Robust Membership Assignment and the Impact of Group Environments on Quenching
- The Dawn of the Red: Star formation histories of group galaxies over the past 5 billion years
- The DEEP2 galaxy redshift survey: the evolution of the blue fraction in groups and the field
- Tracing the Star Formation-Density Relation to z~2
- Dearth of dark matter or massive dark halo? Mass-shape-anisotropy degeneracies revealed by NMAGIC dynamical models of the elliptical galaxy NGC 3379
- Galaxy And Mass Assembly (GAMA): Galaxy environments and star formation rate variations
- The Star Formation Rate-Density Relation at 0.6<z<0.9 and the Role of Star Forming Galaxies
- The effect of environment on star forming galaxies at redshift 1 - First insight from PACS
- A spectroscopic measurement of galaxy formation timescales with ROLES
- Relation Between Stellar Mass and Star Formation Activity in Galaxies
- Environmental Effects on the Star Formation Activity in Galaxies at z=1.2 in the COSMOS Field
- Spectroscopy of Luminous Compact Blue Galaxies in Distant Clusters I. Spectroscopic Data
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- On the evolution and environmental dependence of the star formation rate versus stellar mass relation since z~2
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- The environmental impacts on the star formation main sequence: an H-alpha study of the newly discovered rich cluster at z=1.52
- The Evolution of Star Formation Activity in Cluster Galaxies Over