Nearly all Massive Quiescent Disk Galaxies have a Surprisingly Large Atomic Gas Reservoir
arXiv:1910.02093 · doi:10.3847/2041-8213/ab4ae4
Abstract
The massive galaxy population above the characteristic Schechter mass M*~10^10.6 Msun contributes to about half of the total stellar mass in the local Universe. These massive galaxies usually reside in hot dark matter haloes above the critical shock-heating mass ~10^12 Msun, where the external cold gas supply to these galaxies is expected to be suppressed. When galaxies run out of their cold gas reservoir, they become dead and quiescent. Therefore, massive quiescent galaxies living in hot haloes are commonly believed to be gas-poor. Based on the data from SDSS, ALFALFA, GASS and COLD GASS surveys, here we show that the vast majority of the massive, quiescent, central disk galaxies in the nearby Universe have a remarkably large amount of cold atomic hydrogen gas, surprisingly similar to star-forming galaxies. Both star-forming and quiescent disk galaxies show identical symmetric double-horn HI spectra, indicating similar regularly rotating HI disks. Relative to their star-forming counterparts, massive quiescent central disk galaxies are quenched because of their significantly reduced molecular gas content, lower dust content, and lower star formation efficiency. Our findings reveal a new picture, which clearly demonstrates the detailed star-formation quenching process in massive galaxies and provides a stringent constraint on the physical mechanism of quenching.
10 pages, 4 figures (+2 figures in the appendix); accepted for publication in The Astrophysical Journal Letters
References in corpus (19)
- Mass and environment as drivers of galaxy evolution in SDSS and zCOSMOS and the origin of the Schechter function
- K-corrections and filter transformations in the ultraviolet, optical, and near infrared
- UV Star Formation Rates in the Local Universe
- A Cosmological Framework for the Co-Evolution of Quasars, Supermassive Black Holes, and Elliptical Galaxies: I. Galaxy Mergers & Quasar Activity
- Galaxy Groups in the SDSS DR4: I. The Catalogue and Basic Properties
- Galaxy Zoo 1 : Data Release of Morphological Classifications for nearly 900,000 galaxies
- Strangulation as the primary mechanism for shutting down star formation in galaxies
- 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
- GALEX-SDSS-WISE Legacy Catalog (GSWLC): Star Formation Rates, Stellar Masses and Dust Attenuations of 700,000 Low-redshift Galaxies
- An Objective Definition for the Main Sequence of Star-Forming Galaxies
- Molecular and atomic gas along and across the main sequence of star-forming galaxies
- The impact of interactions, bars, bulges, and AGN on star formation efficiency in local massive galaxies
- Gravitational Quenching in Massive Galaxies and Clusters by Clumpy Accretion
- SDSS IV MaNGA - The spatially resolved transition from star formation to quiescence
- xGASS: Gas-rich central galaxies in small groups and their connections to cosmic web gas feeding
- GASS 3505: the prototype of HI-excess, passive galaxies
- SDSS-IV MaNGA: The Roles of AGNs and Dynamical Processes in Star Formation Quenching in Nearby Disk Galaxies
- HI galaxies with little star formation: an abundance of LIERs
Cited by in corpus (13)
- Disk Growth and Quenching
- ALMA measures rapidly depleted molecular gas reservoirs in massive quiescent galaxies at z~1.5
- What Drives Galaxy Quenching? Resolving Molecular Gas and Star Formation in the Green Valley
- xGASS: passive disks do not host unexpectedly large reservoirs of cold atomic hydrogen
- Towards an Understanding of the Massive Red Spiral Galaxy Formation
- The Elephant in the Bathtub: when the physics of star formation regulate the baryon cycle of galaxies
- Mass and Environment as Drivers of Galaxy Evolution. IV. On the Quenching of Massive Central Disk Galaxies in The Local Universe
- What has quenched the massive spiral galaxies?
- MOSEL and IllustrisTNG: Massive Extended Galaxies at z=2 Quench Later Than Normal-size Galaxies
- The properties and environment of very young galaxies in the local Universe
- SDSS-IV/MaNGA: Can impulsive gaseous inflows explain steep oxygen abundance profiles \& anomalously-low-metallicity regions?
- A giant central red disk galaxy at redshift : challenge to theories of galaxy formation
- An analytical model to kinematically identify thin discs in MaNGA galaxies