English

Optical Properties and Variability of the Be X-ray binary CPD -29 2176

Solar and Stellar Astrophysics 2023-11-06 v2 High Energy Astrophysical Phenomena

Abstract

Be X-ray binaries (Be XRBs) are high-mass X-ray binaries, with a neutron star or black hole orbiting and accreting material from a non-supergiant B-star that is rotating at a near critical rate. These objects are prime targets to understand past binary interactions as the neutron star or black hole progenitor likely experienced Roche lobe overflow to spin up the Be star we observe now. The stellar variability can then allow us to explore the stellar structure of these objects. It was recently demonstrated that the high-mass X-ray binary CPD -29 2176 descended from an ultra-stripped supernova and is a prime target to evolve into an eventual binary neutron star and kilonova. We present the photometric variability from both TESS and ASAS along with the spectral properties and disk variability of the system in this paper. All of the optical lines are contaminated with disk emission except for the He II λ\lambda4686 absorption line. The disk variability time-scales are not the same as the orbital time scale, but could be related to the X-ray outbursts that have been recorded by Swift. We end our study with a discussion comparing CPD -29 2176 to classical Be stars and other Be X-ray binaries, finding the stellar rotation to be near a frequency of 1.5 cycles d1^{-1}, and exhibiting incoherent variability in three frequency groups.

Keywords

Cite

@article{arxiv.2311.00293,
  title  = {Optical Properties and Variability of the Be X-ray binary CPD -29 2176},
  author = {Clarissa M. Pavao and Noel D. Richardson and Jonathan Labadie-Bartz and Herbert Pablo and André-Nicolas Chené},
  journal= {arXiv preprint arXiv:2311.00293},
  year   = {2023}
}

Comments

accepted to ApJ