Physical parameters in the hot spots and jets of Compact Symmetric Objects
arXiv:astro-ph/0111579 · doi:10.1086/338882
Abstract
We present a model to determine the physical parameters of jets and hot spots of a sample of CSOs under very basic assumptions like synchrotron emission and minimum energy conditions. Based on this model we propose a simple evolutionary scenario for these sources assuming that they evolve in ram pressure equilibrium with the external medium and constant jet power. The parameters of our model are constrained from fits of observational data (radio luminosity, hot spot radius and hot spot advance speed) versus projected linear size. From these plots we conclude that CSOs evolve self-similarly and that their radio luminosity increases with linear size along the first kiloparsec. Assuming that the jets feeding CSOs are relativistic from both kinematical and thermodynamical points of view, we use the values of the pressure and particle number density within the hot spots to estimate the fluxes of momentum (thrust), energy, and particles of these relativistic jets. The mean jet power obtained in this way is within an order of magnitude that inferred for FRII sources, which is consistent with CSOs being the possible precursors of large doubles. The inferred flux of particles corresponds to, for a barionic jet, about a 10% of the mass accreted by a black hole of at the Eddington limit, pointing towards a very efficient conversion of accretion flow into ejection, or to a leptonic composition of jets.
11 pages, 2 figures. Accepted for publication in Astrophysical Journal
Cited by in corpus (24)
- Compact steep-spectrum and peaked-spectrum radio sources
- Dating COINS: Kinematic Ages for Compact Symmetric Objects
- A numerical simulation of the evolution and fate of a FRI jet. The case of 3C 31
- On the Evolution of and High-Energy Emission from GHz-Peaked-Spectrum Sources
- X-shaped radio galaxies as observational evidence for the interaction of supermassive binary black holes and accretion disk at pc scale
- Black Hole Astrophysics in AdS Braneworlds
- X-ray Properties of the GigaHertz-Peaked and Compact Steep Spectrum Sources
- Fermi Large Area Telescope Observations of the Active Galaxy 4C +55.17: Steady, Hard Gamma-Ray Emission and its Implications
- On the dynamical evolution of hot spots in powerful radio loud AGNs
- Radio-Excess IRAS Galaxies: PMN/FSC Sample Selection
- The Fate of Young Radio Galaxies: Decelerations Inside Host Galaxies?
- Polarization asymmetry in CSS sources: evidence of AGN fuel?
- Flat-spectrum symmetric objects with ~1 kpc sizes I. The candidates
- Constraining the evolution of young radio-loud AGN
- Symmetry Parameters of CSS Sources: Evidence of Fuelling?
- VLBI-selected sample of Compact Symmetric Object candidates and frequency-dependent position of hotspots
- Multi-Frequency Optical-Depth Maps and the Case for Free-Free Absorption in Two Compact Symmetric Radio Sources: the CSO candidate J1324+4048 and the CSO J0029+3457
- The Production of Ultra High Energy Cosmic Rays during the Early Epochs of Radio-loud AGN
- A Multi-wavelength Study of the Dual Nuclei in Mrk 212
- Parsec-scale properties of the peculiar gigahertz-peaked spectrum quasar 0858-279
- Kinetic power of quasars and statistical excess of MOJAVE superluminal motions
- Radio source evolution
- Fate of baby radio galaxies: Dead or Alive ?
- AGN hosting jets. I: A semi-analytical model for the evolution of radio galaxies