English

Vertical Structure of the Outer Accretion Disk in Persistent Low-Mass X-Ray Binaries

High Energy Astrophysical Phenomena 2011-08-23 v1

Abstract

We have investigated the influence of X-ray irradiation on the vertical structure of the outer accretion disk in low-mass X-ray binaries by performing a self-consistent calculation of the vertical structure and X-ray radiation transfer in the disk. Penetrating deep into the disk, the field of scattered X-ray photons with energy E10E\gtrsim10\,keV exerts a significant influence on the vertical structure of the accretion disk at a distance R1010R\gtrsim10^{10}\,cm from the neutron star. At a distance R1011R\sim10^{11}\,cm, where the total surface density in the disk reaches Σ020\Sigma_0\sim20\,g\,cm2^{-2}, X-ray heating affects all layers of an optically thick disk. The X-ray heating effect is enhanced significantly in the presence of an extended atmospheric layer with a temperature Tatm(2÷3)×106T_{atm}\sim(2\div3)\times10^6\,K above the accretion disk. We have derived simple analytic formulas for the disk heating by scattered X-ray photons using an approximate solution of the transfer equation by the Sobolev method. This approximation has a 10\gtrsim10\,% accuracy in the range of X-ray photon energies E<20E<20\,keV.

Keywords

Cite

@article{arxiv.1108.4222,
  title  = {Vertical Structure of the Outer Accretion Disk in Persistent Low-Mass X-Ray Binaries},
  author = {Alexander V. Mescheryakov and Nikolai I. Shakura and Valery F. Suleimanov},
  journal= {arXiv preprint arXiv:1108.4222},
  year   = {2011}
}

Comments

19 pages, 8 figures, published in Astronomy Letters

R2 v1 2026-06-21T18:53:24.094Z