On the role of fast magnetic reconnection in accreting black hole sources
arXiv:1411.0883 · doi:10.1088/2041-8205/799/2/L20
Abstract
We attempt to explain the observed radio and gamma-ray emission produced in the surrounds of black holes by employing a magnetically-dominated accretion flow (MDAF) model and fast magnetic reconnection triggered by turbulence. In earlier work, standard disk model was used and we refine the model by focussing on the sub-Eddington regime to address the fundamental plane of black hole activity. The results do not change substantially with regard to previous work ensuring that the details of the accretion physics are not relevant in the magnetic reconnection process occurring in the corona. Rather our work puts fast magnetic reconnection events as a powerful mechanism operating in the core region, near the jet base of black hole sources on more solid ground. For microquasars and low-luminosity active galactic nuclei (LLAGNs) the observed correlation between radio emission and mass of the sources can be explained by this process. The corresponding gamma-ray emission also seems to be produced in the same core region. On the other hand, the emission from blazars and gamma-ray bursts (GRBs) cannot be correlated to core emission based on fast reconnection.
5 pages, 3 figures. Accepted for publication in The Astrophysical Journal Letters
References in corpus (4)
- X-ray Properties of Black-Hole Binaries
- Numerical Tests of Fast Reconnection in Weakly Stochastic Magnetic Fields
- A Universal Scaling for the Energetics of Relativistic Jets From Black Hole Systems
- Production of TeV gamma-radiation in the vicinity of the supermassive black hole in the giant radiogalaxy M87
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