English

The clumpy absorber in the high-mass X-ray binary Vela X-1

High Energy Astrophysical Phenomena 2017-12-20 v1 Solar and Stellar Astrophysics

Abstract

Bright and eclipsing, the high-mass X-ray binary Vela X-1 offers a unique opportunity to study accretion onto a neutron star from clumpy winds of O/B stars and to disentangle the complex accretion geometry of these systems. In Chandra-HETGS spectroscopy at orbital phase ~0.25, when our line of sight towards the source does not pass through the large-scale accretion structure such as the accretion wake, we observe changes in overall spectral shape on timescales of a few kiloseconds. This spectral variability is, at least in part, caused by changes in overall absorption and we show that such strongly variable absorption cannot be caused by unperturbed clumpy winds of O/B stars. We detect line features from high and low ionization species of silicon, magnesium and neon whose strengths and presence depend on the overall level of absorption. They imply a co-existence of cool and hot gas phases in the system that we interpret as a highly variable, structured accretion flow close to the compact object such as has been recently seen in simulations of wind accretion in high-mass X-ray binaries.

Keywords

Cite

@article{arxiv.1711.06743,
  title  = {The clumpy absorber in the high-mass X-ray binary Vela X-1},
  author = {V. Grinberg and N. Hell and I. El Mellah and J. Neilsen and A. A. C. Sander and M. Leutenegger and F. Fürst and D. P. Huenemoerder and P. Kretschmar and M. Kühnel and S. Martínez-Núñez and S. Niu and K. Pottschmidt and N. S. Schulz and J. Wilms and M. A. Nowak},
  journal= {arXiv preprint arXiv:1711.06743},
  year   = {2017}
}

Comments

17 pages, 14 figures; A&A accepted

R2 v1 2026-06-22T22:49:55.598Z