Spectral variability in transonic discs around black holes |
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Authors: | Luca Zampieri Roberto Turolla Ewa Szuszkiewicz |
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Affiliation: | 1Department of Physics, University of Padova, via Marzolo 8, 35131 Padova, Italy;2Institute of Physics, University of Szczecin, ul. Wielkopolska 15, 70-451 Szczecin, Poland;3Torun Centre for Astronomy, Nicolaus Copernicus University, ul. Gagarina 11, 87-100 Toruń, Poland;4International School for Advanced Studies, via Beirut 2-4, 34013 Trieste, Italy |
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Abstract: | Transonic discs with accretion rates relevant to intrinsically bright Galactic X-ray sources ( L ≈1038–1039 erg s−1) exhibit a time-dependent cyclic behaviour due to the onset of a thermal instability driven by radiation pressure. In this paper we calculate radiation spectra emitted from thermally unstable discs to provide detailed theoretical predictions for observationally relevant quantities. The emergent spectrum has been obtained by solving self-consistently the vertical structure and radiative transfer in the disc atmosphere. We focus on four particular stages of the disc evolution, the maximal evacuation stage and three intermediate stages during the replenishment phase. The disc is found to undergo rather dramatic spectral changes during the evolution, emitting mainly in the 1–10 keV band during outburst and in the 0.1–1 keV band off-outburst. Local spectra, although different in shape from a blackbody at the disc effective temperature, may be characterized in terms of a hardening factor f . We have found that f is more or less constant, both in radius and in time, with a typical value ∼ 1.65. |
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Keywords: | accretion, accretion discs black hole physics instabilities radiative transfer |
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