English

Monitoring of the eclipsing Wolf-Rayet ULX in the Circinus galaxy

High Energy Astrophysical Phenomena 2020-02-19 v1 Nuclear Theory

Abstract

We studied the eclipsing ultraluminous X-ray source CG X-1 in the Circinus galaxy, re-examining two decades of {\it Chandra} and {\it XMM-Newton} observations. The short binary period (7.21 hr) and high luminosity (LX1040L_{\rm X} \approx 10^{40} erg s1^{-1}) suggest a Wolf-Rayet donor, close to filling its Roche lobe; this is the most luminous Wolf-Rayet X-ray binary known to-date, and a potential progenitor of a gravitational-wave merger. We phase-connect all observations, and show an intriguing dipping pattern in the X-ray lightcurve, variable from orbit to orbit. We interpret the dips as partial occultation of the X-ray emitting region by fast-moving clumps of Compton-thick gas. We suggest that the occulting clouds are fragments of the dense shell swept-up by a bow shock ahead of the compact object, as it orbits in the wind of the more massive donor.

Keywords

Cite

@article{arxiv.1903.02327,
  title  = {Monitoring of the eclipsing Wolf-Rayet ULX in the Circinus galaxy},
  author = {Yanli Qiu and Roberto Soria},
  journal= {arXiv preprint arXiv:1903.02327},
  year   = {2020}
}

Comments

10 pages, 4 figures. This manuscript is a slightly expanded and updated version of our contribution to the Proceedings of IAU Symposium 346, "High Mass X-ray Binaries: illuminating the passage from massive binaries to merging compact objects" (Vienna, August 2018)