English

Characterization of the variability in the O+B eclipsing binary HD 165246

Solar and Stellar Astrophysics 2021-03-17 v1

Abstract

O-stars are known to experience a wide range of variability mechanisms originating at both their surface and their near-core regions. Characterization and understanding of this variability and its potential causes are integral for evolutionary calculations. We use a new extensive high-resolution spectroscopic data set to characterize the variability observed in both the spectroscopic and space-based photometric observations of the O+B eclipsing binary HD~165246. We present an updated atmospheric and binary solution for the primary component, involving a high level of microturbulence (131.3+1.013_{-1.3}^{+1.0}\,km\,s1^{-1}) and a mass of M1=23.71.4+1.1M_1=23.7_{-1.4}^{+1.1}~M_{\odot}, placing it in a sparsely explored region of the Hertzsprung-Russell diagram. Furthermore, we deduce a rotational frequency of 0.690±0.0030.690\pm 0.003\,d1^{-1} from the combined photometric and line-profile variability, implying that the primary rotates at 40\% of its critical Keplerian rotation rate. We discuss the potential explanations for the overall variability observed in this massive binary, and discuss its evolutionary context.

Keywords

Cite

@article{arxiv.2102.08391,
  title  = {Characterization of the variability in the O+B eclipsing binary HD 165246},
  author = {Cole Johnston and Nicolas Aimar and Michael Abdul-Masih and Dominic. M. Bowman and Tim R. White and Calum Hawcroft and Hugues Sana and Sanjay Sekaran and Karan Dsilva and Andrew Tkachenko and Conny Aerts},
  journal= {arXiv preprint arXiv:2102.08391},
  year   = {2021}
}

Comments

Accepted for publication in Monthly Notices of the Royal Astronomical Society, 14 pages, 10 figures, 6 tables, 1 appendix (4 additional figures)

R2 v1 2026-06-23T23:13:31.350Z