English

Origin of the X-ray disc-reflection steep radial emissivity

High Energy Astrophysical Phenomena 2015-06-11 v1 Cosmology and Nongalactic Astrophysics

Abstract

X-ray reflection off the accretion disc surrounding a black hole, together with the associated broad iron Kα\alpha line, has been widely used to constrain the innermost accretion-flow geometry and black hole spin. Some recent measurements have revealed steep reflection emissivity profiles in a number of active galactic nuclei and X-ray binaries. We explore the physically motivated conditions that give rise to the observed steep disc-reflection emissivity profiles. We perform a set of simulations based on the configuration of a possible future high-resolution X-ray mission. Computations are carried out for typical X-ray bright Seyfert-1 galaxies. We find that steep emissivity profiles with q45q\sim 4-5 (where the emissivity is ϵ(r)rq\epsilon (r) \propto r^{-q}) are produced considering either i) a lamp-post scenario where a primary compact X-ray source is located close to the black hole, or ii) the radial dependence of the disc ionisation state. We also highlight the role of the reflection angular emissivity: the radial emissivity index qq is overestimated when the standard limb-darkening law is used to describe the data. Very steep emissivity profiles with q7q \geq 7 are naturally obtained by applying reflection models that take into account radial profile ξ(r)\xi (r) of the disc ionisation induced by a compact X-ray source located close to the central black hole.

Keywords

Cite

@article{arxiv.1208.0360,
  title  = {Origin of the X-ray disc-reflection steep radial emissivity},
  author = {Jiří Svoboda and Michal Dovčiak and René W. Goosmann and Prashin Jethwa and Vladimír Karas and Giovanni Miniutti and Matteo Guainazzi},
  journal= {arXiv preprint arXiv:1208.0360},
  year   = {2015}
}

Comments

10 pages, 17 figures, accepted to A\&A