Spectral hardening as a viable alternative to disc truncation in black hole state transitions
arXiv:1303.2116 · doi:10.1093/mnras/stt436
Abstract
Constraining the accretion flow geometry of black hole binaries in outburst is complicated by the inability of simplified multi-colour disc models to distinguish between changes in the inner disc radius and alterations to the emergent spectrum, parameterised by the phenomenological colour correction factor, f_col. We analyse Rossi X-ray Timing Explorer observations of the low mass Galactic black hole X-ray binary, GX 339-4, taken over seven epochs when the source was experiencing a state transition. The accretion disc component is isolated using a pipeline resulting in robust detections for disc luminosities, 0.001 < L_disc / L_Edd < 0.5. Assuming that the inner disc remains situated at the innermost stable circular orbit over the course of a state transition, we measure the relative degree of change in f_col required to explain the spectral evolution of the disc component. A variable f_col that increases by a factor of ~ 2.0 - 3.5 as the source transitions from the high/soft state to the low/hard state can adequately explain the observed disc spectral evolution. For the observations dominated by a disc component, the familiar scaling between the disc luminosity and effective temperature, L_disc ~ T_eff^4, is observed; however, significant deviations from this relation appear when GX 339-4 is in the hard intermediate and low/hard states. Allowing for an evolving f_col between spectral states, the L_disc-T_eff^4 law is recovered over the full range of disc luminosities, although this depends heavily on the physically conceivable range of f_col. We demonstrate that physically reasonable changes in f_col provide a viable description for multiple state transitions of a black hole binary without invoking radial motion of the inner accretion disc.
28 pages, 17 figures, 3 tables, accepted for publication in MNRAS
References in corpus (12)
- The Nature of SS433 and the Ultraluminous X-ray Sources
- A Long, Hard Look at the Low-Hard State in Accreting Black Holes
- Quasar Accretion Disks Are Strongly Inhomogeneous
- A systematic look at the Very High and Low/Hard state of GX 339-4: Constraining the black hole spin with a new reflection model
- X-ray irradiation in XTE J1817-330 and the inner radius of the truncated disc in the hard state
- Accretion Discs with Strong Toroidal Magnetic Fields
- On the masses and evolutionary status of the black hole binary GX 339-4. A twin system of XTE J1550-564?
- Broadband X-ray Spectra of GX 339-4 and the Geometry of Accreting Black Holes in the Hard State
- On the Role of the Accretion Disk in Black Hole Disk-Jet Connections
- Studying the X-ray hysteresis in GX 339-4: the disc and iron line over one decade
- Photon Bubbles and the Vertical Structure of Accretion Disks
- Inhomogeneous accretion discs and the soft states of black hole X-ray binaries
Cited by in corpus (34)
- X-ray Reflection Spectroscopy of the Black Hole GX 339-4: Exploring the Hard State with Unprecedented Sensitivity
- Accretion disc dynamo activity in local simulations spanning weak-to-strong net vertical magnetic flux regimes
- The Analogous Structure of Accretion Flows in Supermassive and Stellar Mass Black Holes: New Insights from Faded Changing-Look Quasars
- An Extremely Luminous and Variable Ultraluminous X-ray Source in the Outskirts of Circinus Observed with NuSTAR
- A mechanism for hysteresis in black hole binary state transitions
- Spectral Hardening in Black Hole Accretion: Giving Spectral Modelers an f
- A Systematic View of Ten New Black Hole Spins
- NuSTAR, XMM-Newton and Suzaku Observations of the Ultraluminous X-ray Source Holmberg II X-1
- Revisiting Putative Cool Accretion Disks in Ultraluminous X-ray Sources
- A physical model for state transitions in black hole X-ray binaries
- The return to the hard state of GX 339-4 as seen by Suzaku
- Revisiting the ultraluminous supersoft source in M101: an optically thick outflow model
- Strongly magnetized accretion discs require poloidal flux
- Evolution of the accretion disk-corona during bright hard-to-soft state transition: A reflection spectroscopic study with GX 339-4
- Black Hole Spin in X-ray Binaries: Giving Uncertainties an
- Studying the Reflection Spectra of the New Black Hole X-ray Binary Candidate MAXI J1631-479 Observed by NuSTAR: A Variable Broad Iron Line Profile
- Modeling accretion disk emission with generalized temperature profile and its effect on AGN spectral energy distribution
- AstroSat and Chandra view of the high soft state of 4U 1630-47 (4U 1630-472): evidence of the disk wind and a rapidly spinning black hole
- The Case for a Low Mass Black Hole in the Low Mass X-ray Binary V1408 Aquilae (= 4U 1957+115)
- The case for jets in cataclysmic variables
- Results of the Swift Monitoring Campaign of the X-ray Binary 4U 1957+11: Constraints on Binary Parameters
- Insight-HXMT Study of the Inner Accretion Disk in the Black Hole Candidate EXO 1846--031
- Quantifying energetics and dissipation in magnetohydrodynamic turbulence
- Hystereses in dwarf nova outbursts and low-mass X-ray binaries
- An Electron-Scattering Time Delay in Black Hole Accretion Disks
- Back to business: SLX 1746--331 after 13 years of silence
- Unsupervised spectral decomposition of X-ray binaries with application to GX 339-4
- NICER, NuSTAR and Insight-HXMT views to black hole X-ray binary SLX 1746--331
- The Spin of a Newborn Black Hole: Swift J1728.9-3613
- Are spectral and timing correlations similar in different spectral states in black hole X-ray binaries?
- Accretion Disc Evolution in GRO J1655-40 and LMC X-3 with Relativistic and Non-Relativistic Disc Models
- The population of NuSTAR Black Hole X-ray Binaries
- Parameter constraints for accreting millisecond pulsars with synthetic NICER data
- Extracting the Possible Intrinsic Relation between Radiative Efficiency and Mass of QSOs: a Maximum Likelihood Method and its Application to the SDSS DR7 QSOs