Star Formation Quenching in Green Valley Galaxies at and Constraints with Galaxy Morphologies
arXiv:1709.07015 · doi:10.1093/mnras/stx2399
Abstract
We calculate the star formation quenching timescales in green valley galaxies at intermediate redshifts () using stacked zCOSMOS spectra of different galaxy morphological types: spheroidal, disk-like, irregular and merger, dividing disk-like galaxies further into unbarred, weakly-barred and strongly-barred, assuming a simple exponentially-decaying star formation history model and based on the H absorption feature and the Å~break. We find that different morphological types present different star formation quenching timescales, reinforcing the idea that the galaxy morphology is strongly correlated with the physical processes responsible for quenching star formation. Our quantification of the star formation quenching timescale indicates that disks have typical timescales to 5 times longer than that of galaxies presenting spheroidal, irregular or merger morphologies. Barred galaxies in particular present the slowest transition timescales through the green valley. This suggests that although secular evolution may ultimately lead to gas exhaustion in the host galaxy via bar-induced gas inflows that trigger star formation activity, secular agents are not major contributors in the rapid quenching of galaxies at these redshifts. Galaxy interaction, associated with the elliptical, irregular and merger morphologies contribute, to a more significant degree, to the fast transition through the green valley at these redshifts. In the light of previous works suggesting that both secular and merger processes are responsible for the star formation quenching at low redshifts, our results provide an explanation to the recent findings that star formation quenching happened at a faster pace at .
14 pages, 9 figures, 1 table. Accepted for publication in MNRAS (14 Sep. 2017)
References in corpus (13)
- Mass and environment as drivers of galaxy evolution in SDSS and zCOSMOS and the origin of the Schechter function
- The Cosmic Evolution Survey (COSMOS) -- Overview
- K-corrections and filter transformations in the ultraviolet, optical, and near infrared
- UV Star Formation Rates in the Local Universe
- zCOSMOS: A Large VLT/VIMOS redshift survey covering 0 < z < 3 in the COSMOS field
- Strangulation as the primary mechanism for shutting down star formation in galaxies
- A Near-Infrared Study of 2MASS Bars in Local Galaxies: An Anchor for High Redshift Studies
- AEGIS: The color-magnitude relation for X-ray selected AGN
- The DEEP2 Galaxy Redshift Survey: Color and Luminosity Dependence of Galaxy Clustering at z~1
- Mid-IR Luminosities and UV/Optical Star Formation Rates at z<1.4
- Galaxy Zoo: Evidence for Diverse Star Formation Histories through the Green Valley
- Modelling CO emission from hydrodynamic simulations of nearby spirals, starbursting mergers, and high-redshift galaxies
- Quenching or Bursting: Star Formation Acceleration--A New Methodology for Tracing Galaxy Evolution
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- The colors and sizes of recently quenched galaxies: a result of compact starburst before quenching
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- Star formation in far-IR AGN and non-AGN galaxies in the green valley. II. Morphological analysis
- Quenching, bursting and galaxy shapes: colour transformation as a function of morphology
- Compact Galaxies at Intermediate Redshifts Quench Faster than Normal-sized Galaxies
- AGN and Star-Formation Properties of Inside-out Assembled Galaxy Candidates at z<0.1
- Searching for local counterparts of high-redshift post-starburst galaxies in integral field unit spectroscopic surveys of nearby galaxies
- Star formation concentration as a tracer of environmental quenching in action: a study of the Eagle and C-Eagle simulations
- Stellar populations of a sample of far-IR AGN and non-AGN green valley galaxies
- Searching for Spectroscopic Signatures of Ongoing Quenching in SDSS Galaxies
- The Next Generation Virgo Cluster Survey (NGVS). XL. The Morphological Classification of Virgo Cluster Galaxies
- SNITCH: Seeking a simple, informative star formation history inference tool
- The impact of selection criteria on the properties of green valley galaxies