3D Hydrodynamic Simulations of Large-Scale Precessing Jets: Radio Morphology
arXiv:2010.00480 · doi:10.1093/mnras/staa3020
Abstract
The prospect of relativistic jets exhibiting complex morphologies as a consequence of geodetic precession has long been hypothesised. We have carried out a 3D hydrodynamics simulation study varying the precession cone angle, jet injection speed and number of turns per simulation time. Using proxies for the radio emission we project the sources with different inclinations to the line of sight to the observer. We find that a number of different precession combinations result in characteristic `X' shaped sources which are frequently observed in radio data, and some precessing jet morphologies may mimic the morphological signatures of restarting radio sources. We look at jets ranging in scale from tens to hundreds of kiloparsecs and develop tools for identifying known precession indicators of point symmetry, curvature and jet misalignment from the lobe axis and show that, based on our simulation sample of precessing and non-precessing jets, a radio source that displays any of these indicators has a 98% chance of being a precessing source.
Accepted for MNRAS. A link to simulations is available at https://www.extragalactic.info/precessingjets
References in corpus (6)
- Hydrodynamical Backflow in X-shaped Radio Galaxy PKS 2014-55
- RAiSE III: 3C radio AGN energetics and composition
- NGC 326: X-shaped no more
- Unveiling the cause of hybrid morphology radio sources (HyMoRS)
- Joint constraints on the Galactic dark matter halo and Galactic Centre from hypervelocity stars
- A Markov Chain Monte Carlo approach for measurement of jet precession in radio-loud active galactic nuclei
Cited by in corpus (10)
- Mysterious Odd Radio Circle near the Large Magellanic Cloud -- An Intergalactic Supernova Remnant?
- Dynamics of relativistic radio jets in asymmetric environments
- Modelling X-shaped Radio Galaxies: Dynamical and Emission Signatures from the Back-flow model
- Hard X-ray selected giant radio galaxies -- III. The LOFAR view
- A low frequency sub-arcsecond view of powerful radio galaxies in rich-cluster environments: 3C 34 and 3C 320
- New mechanisms for forming multiple hotspots in radio jets
- A Numerical Study of the Impact of Jet Magnetic Topology on Radio Galaxy Evolution
- Multifrequency analysis of the radio emission from a post-merger galaxy CGCG 292-057
- AGN feedback in an infant galaxy cluster: the LOFAR-Chandra view of the giant FRII radio galaxy J103025+052430 at z=1.7
- The X-shaped radio galaxy J0725+5835 is associated with an AGN pair