A Self-consistent Model for the Formation of Relativistic Outflows in Advection-dominated Accretion Disks with Shocks
Open Access
- 11 November 2004
- journal article
- Published by American Astronomical Society in The Astrophysical Journal
- Vol. 617 (1) , L25-L28
- https://doi.org/10.1086/427075
Abstract
In this Letter, we suggest that the relativistic protons powering the outflows emanating from radio-loud systems containing black holes are accelerated at standing, centrifugally-supported shocks in hot, advection-dominated accretion disks. Such disks are ideal sites for first-order Fermi acceleration at shocks because the gas is tenuous, and consequently the mean free path for particle-particle collisions generally exceeds the thickness of the disk. The accelerated particles are therefore able to avoid thermalization, and as a result a small fraction of them achieve very high energies and escape from the disk. In our approach the hydrodynamics and the particle acceleration are coupled and the solutions are obtained self-consistently based on a rigorous mathematical treatment. The theoretical analysis of the particle transport parallels the early studies of cosmic-ray acceleration in supernova shock waves. We find that particle acceleration in the vicinity of the shock can extract enough energy to power a relativistic jet. Using physical parameters appropriate for M87 and Sgr A*, we confirm that the jet kinetic luminosities predicted by the theory agree with the observational estimates.Comment: accepted for publication in Astrophysical Journal LetterKeywords
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This publication has 18 references indexed in Scilit:
- Properties of accretion shock waves in viscous flows around black holesMonthly Notices of the Royal Astronomical Society, 2004
- Inner Boundary Conditions for Advection‐dominated Accretion onto Black HolesThe Astrophysical Journal, 2003
- Evidence for initial jet formation by an accretion disk in the radio galaxy M87New Astronomy Reviews, 2002
- Relativistic Outflows from Advection‐dominated Accretion Disks around Black HolesThe Astrophysical Journal, 2001
- Exact Expressions for the Critical Mach Numbers in the Two‐Fluid Model of Cosmic‐Ray–modified ShocksThe Astrophysical Journal, 2001
- Hubble Space TelescopeObservations of Superluminal Motion in the M87 JetThe Astrophysical Journal, 1999
- On the fate of gas accreting at a low rate on to a black holeMonthly Notices of the Royal Astronomical Society, 1999
- Understanding the Kiloparsec-Scale Structure of M87The Astrophysical Journal, 1996
- Standing shocks in adiabatic black hole accretion of rotating matterThe Astrophysical Journal, 1990
- Particle acceleration by astrophysical shocksThe Astrophysical Journal, 1978