A Model for the Correlation of Hard X-ray Index with Eddington Ratio in Black Hole X-ray Binaries
arXiv:1212.1770 · doi:10.1088/0004-637X/764/1/2
Abstract
Observations show that there is a positive correlation between Eddington ratio and hard X-ray index for , and there is an anti-correlation between and for in black hole X-ray binaries (with ). In this work, we theoretically investigate the correlation between and within the framework of disk-corona model. We improve the model by taking into account all cooling processes including synchrotron and self-Compton radiations in the corona, Comptonization of the soft photons from the underlying accretion disk, and the Bremsstrahlung radiations. Presuming that the coronal flow above the disk can reach up to 0.1 Eddington rate at the outer region, we calculate the structure of the two-phase accretion flows and the emergent spectra for accretion rates from 0.003 to 0.1. It is found that at accretion rates larger than Eddington rate a fraction of coronal gas condenses into the disk and an inner disk can be sustained by condensation. In this case, the X-ray emission is dominated by the scattering the soft photon from the underlying disk in the corona. The emission from the inner disk and corona can produce the positive correlation between and . While at accretion rates lower than Eddington accretion rate, the inner disk vanishes completely by evaporation, the accretion is dominated by ADAF, in which the X-ray emission is produced by the Comptonization of the synchrotron and bremsstrahlung photons of ADAF itself. The emission from ADAF can produce the anti-correlation between and .
Accepted for publication by ApJ
References in corpus (12)
- X-ray Properties of Black-Hole Binaries
- Modelling the behaviour of accretion flows in X-ray binaries
- Advection-Dominated Accretion and the Black Hole Event Horizon
- The Hard X-ray Spectral Slope as an Accretion-Rate Indicator in Radio-Quiet Active Galactic Nuclei
- 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
- An accretion disc-corona model for X-ray spectra of active galactic nuclei
- Re-condensation from an ADAF into an inner disk - the intermediate state of black hole accretion?
- On the Properties of Inner Cool Disks in the Hard State of Black Hole X-Ray Transient Systems
- Confirmation of a correlation between the X-ray luminosity and spectral slope of AGNs in the Chandra Deep Fields
- An inner disk below the ADAF: the intermediate spectral state of black hole accretion
- Accretion Disk Spectra of the Brightest Ultra-luminous X-ray Source in M82
Cited by in corpus (49)
- Hot Accretion Flows Around Black Holes
- The X-ray Spectral Evolution of Galactic Black Hole X-ray Binaries Toward Quiescence
- Correlation between the photon index and X-ray luminosity of black hole X-ray binaries and active galactic nuclei: observations and interpretation
- A new fundamental plane for radiatively efficient black-hole sources
- A Physical Link Between Jet Formation and Hot Plasma in Active Galactic Nuclei
- The relation between radio and X-ray luminosity of black hole binaries: affected by inner cool disks?
- On the role of fast magnetic reconnection in accreting black hole sources
- Jet Properties of GeV-Selected Radio-Loud Narrow-Line Seyfert 1 Galaxies and Possible Connection to Their Disk and Corona
- X-ray spectral variability of LINERs selected from the Palomar sample
- Detection of X-ray spectral state transitions in mini-outbursts of black hole transient GRS 1739-278
- NuSTAR Hard X-ray View of Low-luminosity Active Galactic Nuclei: High-energy Cutoff and Truncated Thin Disk
- The Eddington ratio-dependent changing look events in NGC 2992
- Revisit the fundamental plane of black-hole activity from sub-Eddington to quiescent state
- Different X-ray spectral evolution for black hole X-ray binaries in dual tracks of radio-X-ray correlation
- Long-term and multi-wavelength evolution of a changing-look AGN Mrk 1018
- A disc corona-jet model for the radio/X-ray correlation in black hole X-ray binaries
- Up and Down the Black Hole Radio/X-ray Correlation: the 2017 mini-outbursts from Swift J1753.5-0127
- Coronal properties of black hole X-ray binaries in the hard state as seen by NuSTAR and Swift
- Energetic and Broad Band Spectral Distribution of Emission from Astronomical Jets
- A systematic study of the condensation of the corona and the application for correlation in luminous active galactic nuclei
- Jet-dominated quiescent states in black hole X-ray binaries: the case of V404 Cyg
- The condensation of the corona for the correlation between the hard X-ray photon index and the reflection scaling factor in active galactic nuclei
- Revisiting the structure and spectrum of the magnetic-reconnection-heated corona in luminous AGNs
- The disk evaporation model for the spectral features of low-luminosity active galactic nuclei
- Very fast X-ray spectral variability in Cygnus X-1: Origin of the hard and soft-state emission components
- Modelling the `outliers' track of the radio--X-ray correlation in X-ray binaries based on disc-corona model
- Constraining black hole masses in low-accreting AGN using X-ray spectra
- X-ray spectra of hot accretion flows
- Puzzling Blue Dips in the Black Hole Candidate Swift J1357.2-0933, from ULTRACAM, SALT, ATCA, Swift and NuSTAR
- Multi-wavelength light curve evolution of Swift J1357.2-0933 during its 2011 outburst
- Coevolution of broad emission lines and X-ray spectrum in changing-look AGNs
- Coronal Properties of Low-Accreting AGNs using Swift, XMM-Newton and NuSTAR Observations
- The Large Amplitude X-ray Variability in NGC 7589: Possible Evidence for Accretion Mode Transition
- A systematic study of the advection-dominated accretion flow for the origin of the X-ray emission in weakly magnetized low-level accreting neutron star
- The advection-dominated accretion flow for the origin of the thermal soft X-ray component in low-level accreting neutron stars
- Spectral components in black hole X-ray binaries
- Advection-dominated accretion flow for the varied transition luminosities in black hole X-ray binaries
- Hot accretion flow around neutron stars
- Evidence for Low Universal Equilibrium Black Hole Spin in Luminous Magnetically Arrested Disks
- A toy model for X-ray spectral variability of active galactic nuclei
- Accretion flows in the hard state of black hole X-ray binaries: the effect of hot gas condensation
- Jet-dominated quiescent state in black hole X-ray binaries: the cases of A0620--00 and XTE J1118+480
- The advection-dominated accretion flow for the anti-correlation between the X-ray photon index and the X-ray luminosity in neutron star low-mass X-ray binaries
- On the Black Hole Masses In Ultra-luminous X-ray Sources
- Two-temperature radiative hot accretion flow around neutron stars
- Accretion with two-phase gas supply and its application in black hole X-ray binaries
- Back to basics: Little Red Dots as galaxies and dust-obscured AGNs in a synthetic NIRCam sky simulated with L-GalaxiesBH
- A Monte Carlo Study of the Spectra from Inhomogeneous Accretion Flow
- The black hole X-ray binary MAXI J1348630 in quiescence