Jet power extracted from ADAF and the applications to X-ray binaries and radio galaxy FR dichotomy
arXiv:0807.2288 · doi:10.1086/591933
Abstract
We calculate the jet power of the classical Blandford-Znajek(BZ) model and hybrid model developed by Meier based on the global solutions of advection dominated accretion flows (ADAFs) surrounding Kerr black holes. We find that the jet power of the hybrid model is larger than that of the pure BZ model. The jet power will dominate over the accretion power, and the objects will enter into "jet-power-dominated advective systems", when the accretion rate is less than a critical value mdot_c=Mdot_c/Mdot_Edd, where 3*10^-4 < mdot_c < 5*10^-3 is a function of black hole spin parameter. The accretion power will be dominant when mdot<mdot_c and the objects will enter into "accretion-power-dominated advective systems." This is roughly consistent with that constrained from the low/hard-state black hole X-ray binaries (e.g., Fender et al.). We calculate the maximal jet power as a function of black hole mass with the hybrid jet formation model, and find it can roughly reproduce the dividing line of the Ledlow-Owen relation for FR I/FR II dichotomy in the jet power-black hole(BH) mass plane (Q_jet-M_BH) if the dimensionless accretion rate mdot~0.01 and BH spin parameter j~0.9-0.99 are adopted. This accretion rate mdot~0.01 is consistent with that of the critical accretion rate for the accretion mode transition of a standard disk to an ADAF constrained from the state transition of X-ray binaries. Our results imply that most FR I galaxies may be in the ADAF accretion mode similar to the low/hard-state XRBs.
6 pages, 3 color figures, ApJ in press, edited with ApJ style and English is improved as suggested by Editor
References in corpus (14)
- X-ray Properties of Black-Hole Binaries
- Modelling the behaviour of accretion flows in X-ray binaries
- Accretion disc viscosity: how big is alpha?
- Advection-Dominated Accretion and the Black Hole Event Horizon
- Hot and cold gas accretion and feedback in radio-loud active galaxies
- Jet-dominated advective systems: radio and X-ray luminosity dependence on the accretion rate
- The hard X-ray spectral evolution in X-ray binaries and its application to constrain the black hole mass of ultraluminous X-ray sources
- The Existence of Inner Cool Disks in the Low Hard State of Accreting Black Holes
- Models for jet power in elliptical galaxies: A case for rapidly spinning black holes
- On the origin of X-ray emission in some FR Is: ADAF or jet?
- Trapping of magnetic flux by the plunge region of a black hole accretion disk
- The influence of AGN nuclear parameters on the FRI/FRII dichotomy
- The relation between star formation rate and accretion rate in LINERs
- BZ-MC-BP Model for Jet Production from Black Hole Accretion Disc
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- Kinetic powers of the relativistic jets in Mrk 421 and Mrk 501
- The Accretion Properties and Jet Mechanisms for the Low-Excitation Radio Galaxies
- A Simplified Model of ADAF with the Jet Driven by the Large-Scale Magnetic Field
- Correlations of Disk and Jet Emission Deviating from the Fundamental Plane