Towards a unified model for black hole X-ray binary jets

RPR. P. FenderTMT. M. BelloniEGE. Gallo

University of Amsterdam · Brera Astronomical Observatory

Indexed inarxivcrossrefdoaj

Abstract

We present a unified semiquantitative model for the disc–jet coupling in black hole X-ray binary systems. In the process we have compiled observational aspects from the existing literature, as well as performing new analyses. We argue that during the rising phase of a black hole transient outburst the steady jet known to be associated with the canonical ‘low/hard’ state persists while the X-ray spectrum initially softens. Subsequently, the jet becomes unstable and an optically thin radio outburst is always associated with the soft X-ray peak at the end of this phase of softening. This peak corresponds to a ‘soft very high state’ or ‘steep power-law’ state. Softer X-ray states are not associated with ‘core’…

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Authors

3
  • RP
    R. P. FenderCorresponding

    University of Amsterdam

  • TM
    T. M. BelloniCorresponding

    Brera Astronomical Observatory

  • EG
    E. GalloCorresponding

    University of Amsterdam

Topics & keywords

Keywords
  • Unified Model
  • Lorentz factor
  • Outflow
  • Jet (fluid)
  • Astrophysical jet
  • Black hole (networking)
  • Extrapolation
  • Shock wave
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