X-Ray Spectra of Black Hole X-Ray Binaries with Returning Radiation
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Abstract
In the disk–corona model, the X-ray spectrum of a stellar-mass black hole in an X-ray binary is characterized by three components: a thermal component from a thin and cold accretion disk, a Comptonized component from a hot corona, and a reflection component produced by illumination of the cold disk by the hot corona. In this paper, we assume a lamppost corona, and we improve previous calculations of the X-ray spectrum of black hole X-ray binaries. The reflection spectrum is produced by the direct radiation from the corona as well as by the returning radiation of the thermal and reflection components and is calculated considering the actual spectrum illuminating the disk. If we turn the corona off, the reflection spectrum is completely generated by the returning radiation of the thermal component, as it may happen for some sources in soft spectral states. After choosing the radial density profile of the accretion disk, the ionization parameter is calculated self-consistently at any radial coordinate of the disk from the illuminating X-ray flux and the local electron density. We show the predictions of our model in different regimes, and we discuss its current limitations as well as the next steps to improve it.
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Acknowledgements: This work was supported by the National Natural Science Foundation of China (NSFC), grant Nos. 12250610185 and 12261131497, and the Natural Science Foundation of Shanghai, grant No. 22ZR1403400. T.M. also acknowledges the support from the China Scholarship Council (CSC), grant No. 2022GXZ005433. J.J. acknowledges support from Leverhulme Trust, Isaac Newton Trust, and St Edmund’s College, University of Cambridge. S.R. also acknowledges the support from the Teach@Tübingen Fellowship.
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1538-4357
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MOST ∣ National Natural Science Foundation of China (NSFC) (12261131497)
STCSM ∣ Natural Science Foundation of Shanghai Municipality (上海市自然科学基金) (22ZR1403400)
CSC ∣ Chinese Government Scholarship (2022GXZ005433)

