What Are "X-Shaped" Radio Sources Telling Us? II. Properties of a Sample of 87
arXiv:1710.01652 · doi:10.3847/1538-4357/aa9c4b
Abstract
In an earlier paper we presented Jansky Very Large Array multi-frequency, multi-array continuum imaging of a unique sample of low axial-ratio radio galaxies. In this paper, the second in the series, we examine the images to know the phenomenology of how the off-axis emission relates to the main radio source. Inversion symmetric offset emission appears to be bimodal and to originate from one of two strategic locations: outer ends of radio lobes (Outer-deviation) or from inner ends (Inner-deviation). The latter sources are almost always associated with edge-brightened sources. With S- and Z-shaped sources being a subset of Outer-deviation sources this class lends itself naturally to explanations involving black hole axis precession. Our data allow us to present a plausible model for the more enigmatic Inner-deviation sources with impressive wings; as for outer-deviation sources these too require black hole axis shifts although also requiring plasma backflows into relic channels. Evolution in morphology over time relates the variety in structures in inner-deviation sources including XRGs. With features such as non-collinearities, central inner-S "spine", corresponding lobe emission peaks, double and protruding hotspots not uncommon, black hole axis precession, drifts, or flips could be active in significant fraction of radio sources with prominent off-axis emission. At least 4\% of radio galaxies appear to undergo black hole axis rotation. Quasars offer a key signature to recognize rotating axes. With rich haul of sources that have likely undergone axis rotation our work shows the usefulness of low axial-ratio sources to pursue searches for binary supermassive black holes.
ApJ (accepted)
References in corpus (11)
- A close-pair binary in a distant triple supermassive black-hole system
- FIRST `Winged' and `X'-shaped Radio Source Candidates
- GMRT observations of X-shaped radio sources
- Giant radio galaxies - II. Tracers of large-scale structure
- Extended inverse-Compton emission from distant, powerful radio galaxies
- A multifrequency study of giant radio sources III. Dynamical age vs. spectral age of the lobes of selected sources
- A Candidate Dual AGN in a Double-peaked Emission-line Galaxy with Precessing Radio Jets
- Multiwavelength study of Cygnus A II. X-ray inverse-Compton emission from a relic counterjet and implications for jet duty-cycles
- Multiwavelength study of Cygnus A I. Precession and slow jet speeds from radio observations
- Three-Dimensional Simulations of Inflows Irradiated by a Precessing Accretion Disk in Active Galactic Nuclei: Formation of Outflows
- What Are "X-Shaped" Radio Sources Telling Us? I. Very Large Array Imaging of a Large Sample of Low Axial Ratio Radio Sources
Cited by in corpus (15)
- The Quest for Dual and Binary Supermassive Black Holes: A Multi-Messenger View
- Electromagnetic Counterparts to Massive Black Hole Mergers
- Cataloging the radio-sky with unsupervised machine learning: a new approach for the SKA era
- Hard X-ray selected giant radio galaxies -- II. Morphological evidence of restarted radio activity
- X-shaped Radio Galaxies: Optical Properties, Large-scale Environment and Relationship to Radio Structure
- FIRST winged radio galaxies with X and Z symmetry
- Modelling X-shaped Radio Galaxies: Dynamical and Emission Signatures from the Back-flow model
- GMRT Low-frequency Imaging of an Extended Sample of X-shaped Radio Galaxies
- A unified framework for X-shaped radio galaxies
- What Are "X-Shaped" Radio Sources Telling Us? I. Very Large Array Imaging of a Large Sample of Low Axial Ratio Radio Sources
- Hard X-ray selected giant radio galaxies -- III. The LOFAR view
- Multifrequency analysis of the radio emission from a post-merger galaxy CGCG 292-057
- The X-shaped radio galaxy J0725+5835 is associated with an AGN pair
- A Morphological Identification and Study of Radio Galaxies from LoTSS DR2. I. The "Winged'' Radio Galaxies
- Multi-wavelength follow-up of FRB 180309