Quenching by gas compression and consumption: A case study of a massive radio galaxy at z = 2.57
arXiv:1902.08622 · doi:10.1051/0004-6361/201834542
Abstract
The objective of this work is to study how active galactic nuclei (AGN) influence star formation in host galaxies. We present a detailed investigation of the star-formation history and conditions of a massive radio galaxy based on VLT/X-SHOOTER and ALMA observations. The deep rest-frame ultraviolet spectrum contains photospheric absorption lines and wind features indicating the presence of OB-type stars. The most significantly detected photospheric features are used to characterize the recent star formation: neither instantaneous nor continuous star-formation history is consistent with the relative strength of the Si II 1485 and S V 1502 absorption. Rather, at least two bursts of star formation took place in the recent past, at Myr and Myr ago, respectively. We deduce a molecular H gas mass of M based on ALMA observations of the [C I] P-P emission. The molecular gas mass is only 13 % of its stellar mass. Combined with its high star-formation rate of () Myr, this implies a high star-formation efficiency of ) Gyr and a short depletion time of Myr. We attribute the efficient star formation to compressive gas motions in order to explain the modest velocity dispersions ( 55 km s) of the photospheric lines and of the star-forming gas traced by [C I]. Because of the likely very young age of the radio source, our findings suggest that vigorous star formation consumes much of the gas and works in concert with the AGN to remove any residual molecular gas, and eventually quenching star formation in massive galaxies.
Accepted for publication in Astronomy & Astrophysics. 20 pages, 14 figures, 6 tables
References in corpus (35)
- Cosmic Star Formation History
- The Illustris simulation: the evolving population of black holes across cosmic time
- Distant Radio Galaxies and their Environments
- The Effects of Stellar Rotation. II. A Comprehensive Set of Starburst99 Models
- The dark nemesis of galaxy formation: why hot haloes trigger black hole growth and bring star formation to an end
- Are Dusty Galaxies Blue? Insights on UV Attenuation from Dust-Selected Galaxies
- Minkowski's Object: A Starburst Triggered by a Radio Jet, Revisited
- Effective destruction of CO by cosmic rays: implications for tracing H gas in the Universe
- ALMA observations of atomic carbon in z~4 dusty star-forming galaxies
- The cosmic evolution of radio-AGN feedback to z=1
- Molecular gas content in strongly-lensed z~1.5-3 star-forming galaxies with low IR luminosities
- ALMA observations of massive molecular gas filaments encasing radio bubbles in the Phoenix cluster
- Modelling [CI] emission from turbulent molecular clouds
- Dissecting the IRX - dust attenuation relation: exploring the physical origin of observed variations in galaxies
- High-Ion Absorption in Seven GRB Host Galaxies at z=2-4: Evidence for both Circumburst Plasma and Outflowing Interstellar Gas
- Deep spectroscopy of the FUV-optical emission lines from a sample of radio galaxies at z~2.5: metallicity and ionization
- ALMA Observations of Gas-Rich Galaxies in z~1.6 Galaxy Clusters: Evidence for Higher Gas Fractions in High-Density Environments
- Detection of Two Massive CO Systems in 4C 41.17 at z = 3.8
- Growing black holes and galaxies: black hole accretion versus star formation rate
- Close entrainment of massive molecular gas flows by radio bubbles in the central galaxy of Abell 1795
- ALMA observations of cold molecular gas in AGN hosts at z~1.5 - Evidence of AGN feedback?
- Jet-induced star formation in 3C 285 and Minkowski Object
- Spatially resolved kinematics in the central 1 kpc of a compact star-forming galaxy at z=2.3 from ALMA CO observations
- Exceptional AGN-driven turbulence inhibits star formation in the 3C 326N radio-galaxy
- Low Gas Fractions Connect Compact Star-Forming Galaxies to their z ~ 2 Quiescent Descendants
- The growth and assembly of a massive galaxy at z ~ 2
- Evidence for feedback in action from the molecular gas content in the z~1.6 outflowing QSO XID2028
- The combined effect of AGN and supernovae feedback in launching massive molecular outflows in high-redshift galaxies
- Atomic Carbon in APM 08279+5255 at z=3.91
- The MUSE Hubble Ultra Deep Field Survey: VII. FeII* Emission in Star-Forming Galaxies
- Stellar Dynamics and Star-Formation Histories of z 1 Radio-loud Galaxies
- Medium-resolution spectroscopy of FORJ0332-3557: Probing the interstellar medium and stellar populations of a lensed Lyman-break galaxy at z=3.77
- Disentangling star formation and AGN activity in powerful infrared luminous radio galaxies at 1<z<4
- Stellar Signatures of AGN Jet Triggered Star Formation
- An extreme rotation measure in the high-redshift radio galaxy PKS B0529-549
Cited by in corpus (17)
- The properties of the interstellar medium of galaxies across time as traced by the neutral atomic carbon [CI]
- On the Gas Content, Star Formation Efficiency, and Environmental Quenching of Massive Galaxies in Proto-Clusters at z~2.0-2.5
- Impact of relativistic jets on the star formation rate: a turbulence-regulated framework
- Gas, dust, and star formation in the positive AGN feedback candidate 4C 41.17 at z=3.8
- The subthermal excitation of the C{\sc i} lines in the molecular gas reservoirs of galaxies: its significance and potential utility
- Selection of massive evolved galaxies at in the CANDELS fields
- An exquisitely deep view of quenching galaxies through the gravitational lens: Stellar population, morphology, and ionized gas
- A Multiwavelength Study of ELAN Environments (AMUSE): Detection of a dusty star-forming galaxy within the enormous Lyman nebula at sheds light on its origin
- A Multiwavelength Study of ELAN Environments (AMUSE). Mass budget, satellites spin alignment and gas infall in a massive quasar host halo
- Mapping the "invisible" circumgalactic medium around a z 4.5 radio galaxy with MUSE
- SUPER VII. Morphology and kinematics of H emission in AGN host galaxies at Cosmic noon using SINFONI
- Rediscovering the Milky Way with orbit superposition approach and APOGEE data II. Chrono-chemo-kinematics of the disc
- The Dragonfly Galaxy. III. Jet-brightening of a High-redshift Radio Source Caught in a Violent Merger of Disk Galaxies
- Massive molecular gas companions uncovered by VLA CO(1-0) observations of the = 5.2 radio galaxy TN J09242201
- Extremely Low Molecular Gas Content in the Vicinity of a Red Nugget Galaxy at
- Gas dynamics in an AGN-host galaxy at : regular rotation, non-circular motions, and mass models
- Characterizing CO Emitters in the SSA22-AzTEC26 Field