Characteristics of Powerful Radio Galaxies
arXiv:2409.17514 · doi:10.3390/universe10080319
Abstract
Mature radio galaxies such as M87 belong to a specific subclass of active galaxies (AGN) whose evolution in time endows them with five distinguishing characteristics, including (1) low excitation emission, (2) low star formation rates, (3) high bulge stellar-velocity dispersion, (4) bright stellar nuclei, and (5) weak or nonexistent merger signatures. We show how to understand these seemingly disparate characteristics as originating from the time evolution of powerful radio quasars and describe a new model prediction that tilted accretion disks in AGN are expected to occur in bright quasars but not in other subclasses of AGN. The picture we present should be understood as the most compelling evidence for counter-rotation as a key element in feedback from accreting black holes.
11 pages, 6 Figures, Published in the Universe journal
References in corpus (16)
- Active Galactic Nuclei: what's in a name?
- Radio-Loudness of Active Galactic Nuclei: Observational Facts and Theoretical Implications
- Extreme gas kinematics in the z=2.2 powerful radio galaxy MRC1138-262: Evidence for efficient AGN feedback in the early Universe?
- Stellar kinematics across the Hubble sequence in the CALIFA survey: General properties and aperture corrections
- The evolution of misaligned accretion discs and spinning black holes
- Alignment and Precession of a Black Hole with a Warped Accretion Disc
- Star formation in the local Universe from the CALIFA sample. II. Activation and quenching mechanisms in bulges, bars, and disks
- Photo-heating and supernova feedback amplify each other's effect on the cosmic star formation rate
- Herschel-ATLAS: Far-infrared properties of radio-loud and radio-quiet quasars
- Lens Galaxy Properties of SBS1520+530: Insights from Keck Spectroscopy and AO Imaging
- Relation between winds and jets in radio-loud AGN
- A unified framework for X-shaped radio galaxies
- The Effect of Minor and Major Mergers on the Evolution of Low Excitation Radio Galaxies
- The Velocity Dispersion Function for Massive Quiescent and Star-Forming Galaxies at 0.6 z 1.0
- Resolving the radio loud/radio quiet dichotomy without thick disks
- Is jet re-orientation the elusive trigger for star formation suppression in radio galaxies?