Published January 15, 1983 | Version v1
Journal article

Bubbles, jets, and clouds in active galactic nuclei

  • 1. Department of Physics, University of Illinois at Urbana-Champaign

Description

The Blandford and Reese 1974 fluid twin-exhaust model for jet formation is thoroughly investigated. We perform detailed analytic calculations of all aspects of the cavity-nozzle structures for the nonrelativistic case: the preshock flow, the central shock, cavity flow, and the nozzle. Our analytic results are in excellent agreement with recent sophisticated numerical calculations. We find that for a given central confining gas cloud, only a finite range of jet powers is possible. The sound speed ratio between cavity and cloud must be less than 30. Central masses of approx.109 M/sub sun/ within 1 pc are necessary for high-powered (1046 ergs s-1) extragalactic jets. For a fixed confining cloud sound speed C0, there are three regimes determined by the central engine's luminosity. For low luminosity, a stream of bubbles emerges; for a middle range of luminosities, a jet forms; for too high a luminosity, large clouds are emitted. In the jet regime we find that L/sub j/approx.C05 . The critical dependence of jet power on confining cloud sound speed enables a schematic picture for active galactic nuclei to be proposed. Seyfert galaxies and quasars are placed in the bubble regime. Variable compact radio sources reach the cloud regime. Evolutionary paths are suggested and may provide an indirect test for this picture

Additional details

Publishing Information

Journal Title
Astrophys. J.
Journal Volume
264
Journal Issue
2
Series
Astrophys. J.
Journal Page Range
432-445
ISSN
0004-637X