ALMA measures rapidly depleted molecular gas reservoirs in massive quiescent galaxies at z~1.5
arXiv:2012.01433 · doi:10.3847/1538-4357/abcbf6
Abstract
We present ALMA CO(2-1) spectroscopy of 6 massive (logM11.3) quiescent galaxies at . These data represent the largest sample using CO emission to trace molecular gas in quiescent galaxies above , achieving an average 3 sensitivity of M. We detect one galaxy at 4 significance and place upper limits on the molecular gas reservoirs of the other 5, finding molecular gas mass fractions M/M=f% (3 upper limits). This is 1-2 orders of magnitude lower than coeval star-forming galaxies at similar stellar mass, and comparable to galaxies at with similarly low sSFR. This indicates that their molecular gas reservoirs were rapidly and efficiently used up or destroyed, and that gas fractions are uniformly low (6%) despite the structural diversity of our sample. The implied rapid depletion time of molecular gas (t Gyr) disagrees with extrapolations of empirical scaling relations to low sSFR. We find that our low gas fractions are instead in agreement with predictions from both the recent SIMBA cosmological simulation, and from analytical "bathtub" models for gas accretion onto galaxies in massive dark matter halos (log at ). Such high mass halos reach a critical mass of log by that halt the accretion of baryons early in the Universe. Our data is consistent with a simple picture where galaxies truncate accretion and then consume the existing gas at or faster than typical main sequence rates. Alternatively, we cannot rule out that these galaxies reside in lower mass halos, and low gas fractions may instead reflect either stronger feedback, or more efficient gas consumption.
accepted for publication in ApJ
References in corpus (43)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Gaia Data Release 1. Summary of the astrometric, photometric, and survey properties
- The propagation of uncertainties in stellar population synthesis modeling I: The relevance of uncertain aspects of stellar evolution and the IMF to the derived physical properties of galaxies
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- Simba: Cosmological Simulations with Black Hole Growth and Feedback
- An ultra-deep near-infrared spectrum of a compact quiescent galaxy at z=2.2
- 3D-HST WFC3-selected Photometric Catalogs in the Five CANDELS/3D-HST Fields: Photometry, Photometric Redshifts and Stellar Masses
- Constraining the Low-Mass Slope of the Star Formation Sequence at 0.5<z<2.5
- Combined CO & Dust Scaling Relations of Depletion Time and Molecular Gas Fractions with Cosmic Time, Specific Star Formation Rate and Stellar Mass
- Compaction and Quenching of High-z Galaxies in Cosmological Simulations: Blue and Red Nuggets
- xCOLD GASS: the complete IRAM-30m legacy survey of molecular gas for galaxy evolution studies
- COLD GASS, an IRAM legacy survey of molecular gas in massive galaxies: I. Relations between H2, HI, stellar content and structural properties
- The Origin of the Galaxy Mass-Metallicity Relation and Implications for Galactic Outflows
- Structure and star formation in galaxies out to z=3: evidence for surface density dependent evolution and upsizing
- The Atlas3D Project - XXX. Star formation histories and stellar population scaling relations of early-type galaxies
- The Formation of Massive, Compact Galaxies at z=2 in the Illustris Simulation
- The impact of interactions, bars, bulges, and AGN on star formation efficiency in local massive galaxies
- The Constant Average Relationship between Dust-obscured Star Formation and Stellar Mass from to
- Stellar populations from spectroscopy of a large sample of quiescent galaxies at z > 1: Measuring the contribution of progenitor bias to early size growth
- Mid-IR Luminosities and UV/Optical Star Formation Rates at z<1.4
- Automated Mining of the ALMA Archive in the COSMOS Field (A3COSMOS): II. Cold Molecular Gas Evolution out to Redshift 6
- Stochastic modelling of star-formation histories II: star-formation variability from molecular clouds and gas inflow
- Discovery of Large Molecular Gas Reservoirs in Post-Starburst Galaxies
- The Argo Simulation: I. Quenching of Massive Galaxies at High Redshift as a Result of Cosmological Starvation
- ALMA Spectroscopic Survey in the Hubble Ultra Deep Field: Molecular gas reservoirs in high-redshift galaxies
- PHIBSS2: survey design and z=0.5-0.8 results. Molecular gas reservoirs during the winding-down of star formation
- The evolution of the cold interstellar medium in galaxies following a starburst
- An Extremely Massive Quiescent Galaxy at : Evidence of Insufficiently Rapid Quenching Mechanisms in Theoretical Models
- Massive quenched galaxies at z~0.7 retain large molecular gas reservoirs
- The origin of the atomic and molecular gas contents of early-type galaxies. I. A new test of galaxy formation physics
- The origin of the atomic and molecular gas contents of early-type galaxies. II. Misaligned gas accretion
- Deep CO(1-0) Observations of z=1.62 Cluster Galaxies with Substantial Molecular Gas Reservoirs and Normal Star Formation Efficiencies
- Nearly all Massive Quiescent Disk Galaxies have a Surprisingly Large Atomic Gas Reservoir
- The Molecular Gas Reservoirs of Galaxies: A comparison of CO(1-0) and dust-based molecular gas masses
- A direct constraint on the gas content of a massive, passively evolving elliptical galaxy at z = 1.43
- CLEAR II: Evidence for Early Formation of the Most Compact Quiescent Galaxies at High Redshift
- Low Gas Fractions Connect Compact Star-Forming Galaxies to their z ~ 2 Quiescent Descendants
- Extremely Low Molecular Gas Content in a Compact, Quiescent Galaxy at z=1.522
- The Evolution of the Interstellar Medium in Post-Starburst Galaxies
- The interstellar medium and feedback in the progenitors of the compact passive galaxies at z~2
- An improved probabilistic approach for linking progenitor and descendant galaxy populations using comoving number density
Cited by in corpus (18)
- Evolution Through the Post-Starburst Phase: Using Post-Starburst Galaxies as Laboratories for Understanding the Processes that Drive Galaxy Evolution
- Quenching of star formation from a lack of inflowing gas to galaxies
- The Interstellar Medium of Quiescent Galaxies and its Evolution With Time
- The Evolving Interstellar Medium of Star-Forming Galaxies, as traced by
- The Diverse Molecular Gas Content of Massive Galaxies Undergoing Quenching at z~1
- The First Quiescent Galaxies in TNG300
- Dust temperature uncertainties hamper the inference of dust and molecular gas masses from the dust continuum emission of quiescent high-redshift galaxies
- Red quasars blow out molecular gas from galaxies during the peak of cosmic star formation
- The [CII] 158 m emission line as a gas mass tracer in high redshift quiescent galaxies
- Fast Rotators at Cosmic Noon: Stellar Kinematics for 15 Quiescent Galaxies from JWST-SUSPENSE
- RUBIES spectroscopically confirms the high number density of quiescent galaxies from
- When relics were made: vigorous stellar rotation and low dark matter content in the massive ultra-compact galaxy GS-9209 at z=4.66
- On the unique evolutionary mechanisms of massive quiescent galaxies in the epoch of reionisation
- Active Galactic Nuclei in the Green Valley at z0.7
- ACOSMOS: The dust content of massive quiescent galaxies and its evolution with cosmic time
- Evolution of the star formation rate surface density main sequence. Insights from a semi-analytic simulation since
- ALMA measures molecular gas reservoirs comparable to field galaxies in a low-mass galaxy cluster at z=1.3
- Low star-formation activity and low gas content of quiescent galaxies at 3.5-4.0 constrained with ALMA