A new connection between the opening angle and the large-scale morphology of extragalactic radio sources
arXiv:1206.1778 · doi:10.1111/j.1365-2966.2012.21645.x
Abstract
In the case of an initially conical jet, we study the relation between jet collimation by the external pressure and large-scale morphology. We first consider the important length-scales in the problem, and then carry out axisymmetric hydrodynamic simulations that include, for certain parameters, all these length-scales. We find three important scales related to the collimation region: (i) where the sideways ram-pressure equals the external pressure, (ii) where the jet density equals the ambient density, and (iii) where the forward ram-pressure falls below the ambient pressure. These scales are set by the external Mach-number and opening angle of the jet. We demonstrate that the relative magnitudes of these scales determine the collimation, Mach-number, density and morphology of the large scale jet. Based on analysis of the shock structure, we reproduce successfully the morphology of Fanaroff-Riley (FR) class I and II radio sources. Within the framework of the model, an FR I radio source must have a large intrinsic opening angle. Entrainment of ambient gas might also be important. We also show that all FR I sources with radio lobes or similar features must have had an earlier FR II phase.
14 pages, 10 figures, accepted by MNRAS, same as previous version
References in corpus (11)
- Magnetic acceleration of relativistic AGN jets
- A numerical simulation of the evolution and fate of a FRI jet. The case of 3C 31
- High-energy particle acceleration at the radio-lobe shock of Centaurus A
- The central parsecs of Centaurus A: High Excitation Gas, a Molecular Disk, and the Mass of the Black Hole
- Luminosity function, sizes and FR dichotomy of radio-loud AGN
- Formation of dynamical structures in relativistic jets: the FRI case
- Observed properties of FRII quasars and radio galaxies at z < 1.0
- New results on particle acceleration in the Centaurus A jet and counterjet from a deep Chandra observation
- A Multi-epoch VLBI Survey of the Kinematics of Caltech-Jodrell Bank Flat-Spectrum Sources, Part II: Analysis of the Kinematics
- The influence of AGN nuclear parameters on the FRI/FRII dichotomy
- Chemical enrichment of the intracluster medium by FR II radio sources
Cited by in corpus (39)
- Numerical modelling of the lobes of radio galaxies in cluster environments
- Systematic properties of decelerating relativistic jets in low-luminosity radio galaxies
- The LOFAR window on star-forming galaxies and AGN - curved radio SEDs and IR-radio correlation at
- Spectral ageing in the lobes of FR-II radio galaxies: New methods of analysis for broadband radio data
- Numerical modelling of the lobes of radio galaxies in cluster environments II: Magnetic field configuration and observability
- Spectral ageing in the lobes of cluster-centre FR-II radio galaxies
- How frequent are close supermassive binary black holes in powerful jet sources?
- Blandford-Znajek jets in galaxy formation simulations: method and implementation
- RAiSE II: resolved spectral evolution in radio AGN
- Radio Galaxy Zoo: A Search for Hybrid Morphology Radio Galaxies
- Measuring the giant radio galaxy length distribution with the LoTSS
- Recent Progress in Modeling the Macro- and Micro-Physics of Radio Jet Feedback in Galaxy Clusters
- Blandford-Znajek jets in galaxy formation simulations: exploring the diversity of outflows produced by spin-driven AGN jets in Seyfert galaxies
- 3D Hydrodynamic Simulations of Large-Scale Precessing Jets: Radio Morphology
- Dynamics of relativistic radio jets in asymmetric environments
- Observability of intermittent radio sources in galaxy groups and clusters
- Jet-Intracluster Medium interaction in Hydra A. II The Effect of Jet Precession
- What Powers the Most Relativistic Jets? II: Flat Spectrum Radio Quasars
- RAiSE: simulation-based analytical model of AGN jets and lobes
- Radio Galaxy Zoo: Observational evidence for environment as the cause of radio source asymmetry
- PRAiSE: Resolved spectral evolution in simulated radio sources
- What Powers the Most Relativistic Jets? I: BL Lacs
- Jet-Intracluster Medium interaction in Hydra A. I Estimates of jet velocity from inner knots
- The role of environment in the observed Fundamental Plane of radio Active Galactic Nuclei
- Active galactic nuclei jets simulated with smoothed particle hydrodynamics
- Numerical Investigation of Dynamical and Morphological Trends in Relativistic Jets
- Collimation of the kiloparsec-scale radio jets in NGC 2663
- RAiSERed: radio continuum redshifts for lobed AGNs
- Revealing the Unusual Structure of the KAT-7-Discovered Giant Radio Galaxy J01331302
- Extended radio AGN at z ~ 1 in the ORELSE survey: The confining effect of dense environments
- Positive and negative feedback by AGN jets in high-redshift galaxies
- Probing gaseous halos of galaxies with radio jets
- CosmoDRAGoN simulations -- I. Dynamics and observable signatures of radio jets in cosmological environments
- Study of RCR Catalogue Radio Source Integral Spectra
- Numerical modelling of the lobes of radio galaxies -- Paper V: Universal Pressure Profile cluster atmospheres
- EMU and the DRAGNs I: A Catalogue of DRAGNs
- Quantifying Radio Source Morphology
- Multi-frequency study of large size radio galaxies 3C 35 and 3C 284
- Asymmetries of AGN jets in inhomogeneous media