The relation between radio and X-ray luminosity of black hole binaries: affected by inner cool disks?
arXiv:1401.7525 · doi:10.1051/0004-6361/201322423
Abstract
Observations of the black hole X-ray binaries GX 339-4 and V404 Cygni have brought evidence of a strong correlation between radio and X-ray emission during the hard spectral state; however, now more and more sources, the so-called `outliers', are found with a radio emission noticeably below the established `standard' relation. Several explanations have already been considered, but the existence of dual tracks is not yet fully understood. We suggest that in the hard spectral state re-condensation of gas from the corona into a cool, weak inner disk can provide additional soft photons for Comptonization, leading to a higher X-ray luminosity in combination with rather unchanged radio emission, which presumably traces the mass accretion rate. As an example, we determined how much additional luminosity due to photons from an underlying disk would be needed to explain the data from the representative outlier source H1743-322. From the comparison with calculations of Compton spectra with and without the photons from an underlying disk, we find that the required additional X-ray luminosity lies well in the range obtained from theoretical models of the accretion flow. The radio/X-ray luminosity relation resulting from Comptonization of additional photons from a weak, cool inner disk during the hard spectral state can explain the observations of the outlier sources, especially the data for H1743-322, the source with the most detailed observations. The existence or non-existence of weak inner disks on the two tracks might point to a difference in the magnetic fields of the companion stars. These could affect the effective viscosity and the thermal conductivity, hence also the re-condensation process.
7 pages, 2 figures. Accepted for publication in A & A
References in corpus (13)
- X-ray Properties of Black-Hole Binaries
- Modelling the behaviour of accretion flows in X-ray binaries
- A Long, Hard Look at the Low-Hard State in Accreting Black Holes
- A radio-emitting outflow in the quiescent state of A0620-00: implications for modelling low-luminosity black hole binaries
- A Prominent Accretion Disk in the Low-Hard State of the Black Hole Candidate SWIFT J1753.5-0127
- Revisiting the radio/X-ray flux correlation in the black hole V404 Cyg: from outburst to quiescence
- The Existence of Inner Cool Disks in the Low Hard State of Accreting Black Holes
- Re-condensation from an ADAF into an inner disk - the intermediate state of black hole accretion?
- A Model for Emission from Jets in X-ray Binaries: Consequences of a Single Acceleration Episode
- On the Properties of Inner Cool Disks in the Hard State of Black Hole X-Ray Transient Systems
- Parallel tracks in infrared versus X-ray emission in black hole X-ray transient outbursts: a hysteresis effect?
- An inner disk below the ADAF: the intermediate spectral state of black hole accretion
- Disk-Evaporation Fed Corona: Structure and Evaporation Feature with Magnetic Field
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