Asymmetries in Extragalactic Double Radio Sources: Clues from 3D Simulations of Jet - Disc Interaction
arXiv:1008.2757 · doi:10.1111/j.1365-2966.2010.17674.x
Abstract
Observational and theoretical studies of extragalactic radio sources have suggested that an inhomogeneous environment may be responsible for observed arm length asymmetries of jets and the properties of extended emission line regions in high redshift radio galaxies. We perform 3D hydrodynamic simulations of the interaction of a powerful extragalactic bipolar jet with a disc-shaped clumpy interstellar medium of log-normal density distribution and analyze the asymmetry. Furthermore, we compute the relation between jet asymmetry and the ISM properties by means of Monte Carlo simulations based on a 1D propagation model for the jet through the dense medium. We find that the properties of the ISM can be related to a probability distribution of jet arm length asymmetries: Disc density and height are found to have the largest effect on the asymmetry for realistic parameter ranges, while the Fourier energy spectrum of the ISM and turbulent Mach number only have a smaller effect. The hydrodynamic simulations show that asymmetries generally may be even larger than expected from the 1D model due to the complex interaction of the jet and its bow shock with gaseous clumps, which goes much beyond simple energy disposal. From our results, observed asymmetries of medium-sized local radio galaxies may be explained by gas masses of 10^9 to 10^10 solar masses in massive elliptical galaxies. Furthermore, the simulations provide a theoretical basis for the observed correlation that emission line nebulae are generally found to be brighter on the side of the shorter lobe in high redshift radio galaxies (McCarthy et al. 1991). This interaction of jets with the cold gas phase suggests that star formation in evolving high redshift galaxies may be affected considerably by jet activity.
8 pages, 9 figures. Submitted to MNRAS. For associated movies, see http://www.mpe.mpg.de/~vgaibler/jet-disk/
References in corpus (6)
- The Statistics of Supersonic Isothermal Turbulence
- Evidence for powerful AGN winds at high redshift: Dynamics of galactic outflows in radio galaxies during the "Quasar Era"
- A Model for Star Formation, Gas Flows and Chemical Evolution in Galaxies at High Redshifts
- Interactions of a Light Hypersonic Jet with a Non-Uniform Interstellar Medium
- Observed properties of FRII quasars and radio galaxies at z < 1.0
- Simulations of multi-phase turbulence in jet cocoons
Cited by in corpus (14)
- Numerical modelling of the lobes of radio galaxies in cluster environments II: Magnetic field configuration and observability
- Quasars That Have Transitioned from Radio-quiet to Radio-loud on Decadal Timescales Revealed by VLASS and FIRST
- The SINFONI survey of powerful radio galaxies at z~2: Jet-driven AGN feedback during the Quasar Era
- Exceptional AGN-driven turbulence inhibits star formation in the 3C 326N radio-galaxy
- Cold gas removal from the centre of a galaxy by a low-luminosity jet
- Simulations of AGN Driven Galactic Outflow Morphology and Content
- Dynamics of relativistic radio jets in asymmetric environments
- Stellar Signatures of AGN Jet Triggered Star Formation
- Multi-epoch Sub-arcsecond [Fe II] Spectroimaging of the DG Tau Outflows with NIFS. II. On the Nature of the Bipolar Outflow Asymmetry
- The Black Hole-Galaxy Connection: Interplay between Feedback, Obscuration, and Host Galaxy Substructure
- Digging process in NGC 6951: the molecular disc bumped by the jet
- Positive and negative feedback by AGN jets in high-redshift galaxies
- Disks of Stars in the Galactic center triggered by Tidal Disruption Events
- Asymmetries of AGN jets in inhomogeneous media