4.7 Article

Global accretion properties of black hole X-ray binaries: A phenomenological perspective

Journal

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY
Volume 517, Issue 3, Pages 3588-3597

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/mnras/stac2939

Keywords

accretion, accretion discs; X-rays: binaries

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By collecting spectral data of black hole X-ray binaries (BIIXBs) across different spectral states, the study explores the spectral properties and correlations among different spectral parameters. Interesting correlations and uncertain phenomena are observed in different spectral states.
Black hole X-ray binaries (BIIXBs) show rich phenomenology in the spectral and timing properties. We collected the spectral data of 20 BHXBs from the literature across different spectral states. The spectral properties are studied in the forms of the inner disc temperature (T-in), photon index (Gamma), hot electron temperature (kT(e)), X-ray flux (F-X), and luminosity (L-X). We studied various correlations among different spectral parameters to understand the accretion process on a global scale. In the thermal soft states (TSS), we find most of the sources followed F-disc proportional to T-in(4) relation. A 'V'-shaped correlation is found between Gamma and total luminosity (L-tot) in the hard Comptonized state (HCS). The Comptonized luminosity is observed to be correlated with the disc luminosity in the HCS and TSS. No notable correlation is observed in the intermediate state (IMS). The evolution of the inner disc radius (R-in) is unclear in the HCS and IMS. We also discuss how the hot electron temperature changes with other spectral parameters. We observe that the iron line flux correlates with disc and Comptonized fluxes. The strength of the reprocessed emission is found to vary across spectral states.

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