Evidence that powerful radio jets have a profound influence on the evolution of galaxies
arXiv:astro-ph/0409687 · doi:10.1111/j.1365-2966.2004.08234.x
Abstract
The relationships between supermassive black holes and the properties of their associated dark-matter halos imply that outflows from accreting black holes provide a feedback mechanism regulating galaxy formation. Accreting black holes with weak or undetectable radio jets (radio-quiet quasars) outnumber those with powerful jets (radio-loud quasars) by a factor ~10-100, so powerful-jet outflows are often neglected. However, whenever powerful jets are triggered, there is a dramatic (factor >100) step-function increase in the efficiency of feedback. We use a feedback model, together with the measured space density of flat-spectrum radio-loud quasars, to show that a powerful-jet episode probably occurred in every protocluster in the Universe. Before jet triggering, there was time for gravitational collapse to create many (~10-100) surrounding protogalaxies massive enough to host radio-quiet quasars. After triggering, the powerful jet pushes back and heats ionized gas so that it cannot fall onto these protogalaxies and cool. Once neutral/molecular gas reservoirs become exhausted, there is a synchronized shut down in both star-formation and black-hole activity throughout the protocluster. These considerations imply that radio-loud quasars have a profound influence on the evolution of all the galaxies seen in clusters today.
5 pages, 2 figures, accepted for publication in MNRAS
Cited by in corpus (56)
- EMU: Evolutionary Map of the Universe
- Science with ASKAP - the Australian Square Kilometre Array Pathfinder
- The realm of the galaxy protoclusters
- The environments of starburst and post-starburst galaxies at z=0.4-0.8
- AGN Jet Kinetic Power and the Energy Budget of Radio Galaxy Lobes
- The X-ray Jets of Active Galaxies
- Why z > 1 radio-loud galaxies are commonly located in proto-clusters
- Radio galaxies in the 2SLAQ Luminous Red Galaxy Survey: I. The evolution of low-power radio galaxies to z~0.7
- RAiSE III: 3C radio AGN energetics and composition
- Correlating galaxy colour and halo concentration: A tunable Halo Model of galactic conformity
- Observational constraints on the spin of the most massive black holes from radio observations
- The radio continuum structure of Centaurus A at 1.4 GHz
- The clustering and bias of radio-selected AGN and star-forming galaxies in the COSMOS field
- Size dependence of the radio luminosity - mechanical power correlation in radio galaxies
- A large-scale shock surrounding a powerful radio galaxy
- The Atacama Cosmology Telescope: measuring radio galaxy bias through cross-correlation with lensing
- Evidence for the Thermal Sunyaev-Zel'dovich Effect Associated with Quasar Feedback
- The many lives of active galactic nuclei-II: The formation and evolution of radio jets and their impact on galaxy evolution
- The discovery of a typical radio galaxy at z = 4.88
- Deep GMRT 610 MHz Observations of the ELAIS N1 Field : Catalogue and Source Counts
- Low-power radio galaxy environments in the Subaru/XMM-Newton Deep Field at z~0.5
- Radio AGN in galaxy clusters: heating hot atmospheres and driving supermassive black hole growth over cosmic time
- The environments of z~1 Active Galactic Nuclei at 3.6um
- Radio AGN in 13,240 galaxy clusters from the Sloan Digital Sky Survey
- A new sample of southern radio galaxies: Host galaxy masses and star-formation rates
- Environmental Quenching and Galactic Conformity in the Galaxy Cross-Correlation Signal
- A search for distant radio galaxies from SUMSS and NVSS: II. Optical Spectroscopy
- Evidence of a link between the evolution of clusters and their AGN fraction
- Testing Models of the Individual and Cosmological Evolutions of Powerful Radio Galaxies
- Testing Models of Radio Galaxy Evolution and the Cosmological Impact of FR II Radio Galaxies
- Cosmological evolution of the Fanaroff-Riley type II source population
- Quantifying the Thermal Sunyaev-Zel'dovich Effect and Excess Millimeter Emission in Quasar Environments
- The GLEAM 4-Jy (G4Jy) Sample: I. Definition and the catalogue
- B2 0902+34: A Collapsing Protogiant Elliptical Galaxy at z=3.4
- Herschel-ATLAS: the far-infrared properties and star-formation rates of broad absorption line quasi-stellar objects
- Large Scale Impact of the Cosmological Population of Expanding Radio Galaxies
- Transient C IV Broad Absorption Lines in radio detected QSOs
- Measuring the jet power of flat spectrum radio quasars
- Radio Galaxy Zoo: Observational evidence for environment as the cause of radio source asymmetry
- Evolution of the Most Massive Galaxies to z ~ 0.6: II. The link between radio AGN activity and star formation
- The evolution of radio sources in the UKIDSS-DXS XMM-LSS field
- The Spitzer Extragalactic Representative Volume Survey (SERVS): The Environments of High-z SDSS Quasi-Stellar-Objects
- Herschel-ATLAS/GAMA: What determines the far-infrared properties of radio-galaxies?
- Tunable filter imaging of high redshift quasar fields
- The relation between galaxy density and radio jet power for 1.4 GHz VLA selected AGN in Stripe 82
- The optically-selected 1.4-GHz quasar luminosity function below 1 mJy
- Far-infrared emission in luminous quasars accompanied by nuclear outflows
- Superdisks in Radio Galaxies: Jet-Wind Interactions
- Fundamental properties of Fanaroff-Riley II radio galaxies investigated via Monte Carlo simulations
- When galaxies collide: understanding the broad absorption-line radio galaxy 4C +72.26
- Influence of AGN Outbursts on the Surrounding Galaxies
- The estimation of black-hole masses in distant radio galaxies
- Detailed study of the Bootes field using 300-500 MHz uGMRT observations: Source Properties and radio--infrared correlations
- Radio Galaxies in SIMBA: A MIGHTEE Comparison
- Fundamental parameters of FR II radio galaxies and their impact on groups and clusters' environments
- MIGHTEE: The dark matter haloes, duty cycle and mechanical feedback from radio-AGN up to