Discovery of an X-ray cavity near the radio lobes of Cygnus A indicating previous AGN activity
arXiv:1207.0699 · doi:10.1051/0004-6361/201219538
Abstract
Cygnus A harbours the nearest powerful radio jet of an Fanaroff-Riley (FR) class II radio galaxy in a galaxy cluster where the interaction of the jet with the intracluster medium (ICM) can be studied in detail. We use a large set of Chandra archival data, VLA and new LOFAR observations to shed new light on the interaction of the jets with the ICM. We identify an X-ray cavity in the distribution of the X-ray emitting plasma in the region south of the Cyg A nucleus which has lower pressure than the surrounding medium. The LOFAR and VLA radio observations show that the cavity is filled with synchrotron emitting plasma. The spectral age and the buoyancy time of the cavity indicates an age at least as large as the current Cyg A jets and not much larger than twice this time. We suggest that this cavity was created in a previous active phase of Cyg A when the energy output of the Active Galactic Nucleus (AGN) was about two orders of magnitude less than today.
Letter submitted on 4 May 2012 to A&A, 4 pages, 4 figures
References in corpus (3)
Cited by in corpus (25)
- The subarcsecond mid-infrared view of local active galactic nuclei: I. The N- and Q-band imaging atlas
- Numerical modelling of the lobes of radio galaxies in cluster environments II: Magnetic field configuration and observability
- Gas perturbations in cool cores of galaxy clusters: effective equation of state, velocity power spectra and turbulent heating
- How frequent are close supermassive binary black holes in powerful jet sources?
- Evidence of parsec-scale jets in Low-luminosity Active Galactic Nuclei
- The Cocoon Shocks of Cygnus A: Pressures and Their Implications for the Jets and Lobes
- A systematic search for X-ray cavities in galaxy clusters, groups, and elliptical galaxies
- The many lives of active galactic nuclei-II: The formation and evolution of radio jets and their impact on galaxy evolution
- Recent Progress in Modeling the Macro- and Micro-Physics of Radio Jet Feedback in Galaxy Clusters
- The Shape of X-ray Cavities in Galaxy Clusters: Probing Jet Properties and Viscosity
- The deepest view of RBS 797: evidence for two pairs of equidistant X-ray cavities
- A unique, ring-like radio source with quadrilateral structure detected with machine learning
- From the core to the outskirts: structure analysis of three massive galaxy clusters
- Evidence for a significant mixture of electron/positron pairs in FRII jets constrained by cocoon dynamics
- Relativistic AGN jets II. Jet properties and mixing effects for episodic jet activity
- Radio Galaxy Zoo: Observational evidence for environment as the cause of radio source asymmetry
- AGN Feedback in galaxy groups: a detailed study of X-ray features and diffuse radio emission in IC1262
- Detection of non-thermal X-ray emission in the lobes and jets of Cygnus A
- The X-ray Ribs Within the Cocoon Shock of Cygnus A
- Simulations of the merging cluster of galaxies Cygnus A
- Relativistic AGN jets III. Synthesis of synchrotron emission from Double-Double Radio Galaxies
- The X-shaped radio galaxy J0725+5835 is associated with an AGN pair
- Cocoon shock, X-ray cavities and extended Inverse Compton emission in Hercules A: clues from Chandra observations
- On the signature of black holes on the quenched stellar mass function
- The complex intracluster medium of Abell 1569 and its interaction with central radio galaxies