Re-condensation from an ADAF into an inner disk - the intermediate state of black hole accretion?
arXiv:astro-ph/0611487 · doi:10.1051/0004-6361:20066203
Abstract
Context: Accretion onto galactic and supermassive black holes occurs in different modes, which are documented in hard and soft spectral states, commonly attributed to an advection-dominated flow (ADAF) inside a truncated disk and standard disk accretion, respectively. At the times of spectral transition an intermediate state is observed, for which the accretion flow pattern is still unclear. Aims: We analyze the geometry of the accretion flow when the mass flow rate in the disk decreases (soft/hard transition) and evaporation of gas into the coronal flow leads to disk truncation. Methods: We evaluate the physics of an advection-dominated flow affected by thermal conduction to a cool accretion disk underneath. We find re-condensation of gas from the ADAF into the underlying inner disk at distances from the black hole and at rates, that depend on the properties of the hot ADAF and vary with the mass accretion rate. This sustains an inner disk for longer than a viscous decay time after the spectral transition occurred, in accordance with the spectra that indicate cool gas in the neighborhood of the accreting black hole. The model allows us to understand why Cyg X-1 does not show hysteresis in the spectral state transition luminosity that is commonly observed for X-ray transient sources. Conclusions: Our results shed new light on the complex mass flow pattern during spectral state transition.
10 pages, 4 figures, accepted by A&A
References in corpus (3)
Cited by in corpus (26)
- The radio/X-ray domain of black hole X-ray binaries at the lowest radio luminosities
- The Existence of Inner Cool Disks in the Low Hard State of Accreting Black Holes
- Broadband X-ray Spectra of GX 339-4 and the Geometry of Accreting Black Holes in the Hard State
- Accretion disks and coronae in the X-ray flashlight
- An overview of jets and outflows in stellar mass black holes
- On the Properties of Inner Cool Disks in the Hard State of Black Hole X-Ray Transient Systems
- Hysteresis of spectral evolution in the soft state of black-hole binary LMC X-3
- Physical origin of the nonphysical spin evolution of MAXI J1820+070
- A Case for a Binary Black Hole System Revealed via Quasi-Periodic Outflows
- Black hole spin of Cyg X-1 determined from the softest state ever observed
- Disk-Evaporation Fed Corona: Structure and Evaporation Feature with Magnetic Field
- The condensation of the corona for the correlation between the hard X-ray photon index and the reflection scaling factor in active galactic nuclei
- Broadband X-ray Spectral and Timing Analyses of the Black Hole Binary Candidate Swift J1658.2-4242: Rapid Flux Variation and the Turn-on of a Transient QPO
- Analytical Model of Disk Evaporation and State Transitions in Accreting Black Holes
- Prototyping non-equilibrium viscous-timescale accretion theory using LMC X-3
- Interaction of the accretion flows in corona and disk near the black hole in AGN
- Rms-flux relation and fast optical variability simulations of the nova-like system MV Lyr
- Probing the shot behaviour in Cygnus X-1 using simultaneous AstroSat-NICER observation
- Wind accretion in Cygnus X-1
- Advection-dominated accretion flow for the varied transition luminosities in black hole X-ray binaries
- Modeling time delays in the X-ray spectrum of the Seyfert galaxy MCG-6-30-15
- Accretion flows in the hard state of black hole X-ray binaries: the effect of hot gas condensation
- Low frequency QPOs and possible change in the accretion geometry during the outbursts of Aquila X1
- Accretion with two-phase gas supply and its application in black hole X-ray binaries
- XMM-Newton observation of V1504 Cyg as a probe for the existence of an evaporated corona
- A Monte Carlo Study of the Spectra from Inhomogeneous Accretion Flow