English

$\beta$ Cephei Pulsations in the High-mass Eclipsing System CW Cephei

Solar and Stellar Astrophysics 2020-12-23 v1

Abstract

CW Cep is an early B-type eclipsing binary with mass measurement precisions better than 1 \%. We report the discovery of pulsation signatures in the TESS time-series data of the system observed during Sectors 17 and 18. Our binary modeling indicates that the target star is a partially-eclipsing detached system with masses of 12.95 MM_\odot and 11.88 MM_\odot and radii of 5.52 RR_\odot and 5.09 RR_\odot in an eccentric orbit of ee = 0.0305. The distance to the eclipsing system, 928 ±\pm 36 pc, is much more precise than the Gaia distance of 962 ±\pm 453 pc. Applying multifrequency analyses to the residual light curve in the outside-eclipse part, we detected 13 significant signals in two frequency regions. Six frequencies below 1 day1^{-1} appeared to be mostly orbital harmonic and combination terms, or sidelobes due to insufficient removal of the binary effects. In contrast, seven frequencies clustered around 2.73 day1^{-1} and 5.34 day1^{-1} could be considered β\beta Cep-type pulsations. Our results represent the second discovery of β\beta Cep pulsations present in double-lined eclipsing binaries with precise masses and, hence, CW Cep serves as an important test-bed for the asteroseismic modeling of high-mass stars.

Keywords

Cite

@article{arxiv.2010.03711,
  title  = {$\beta$ Cephei Pulsations in the High-mass Eclipsing System CW Cephei},
  author = {Jae Woo Lee and Kyeongsoo Hong},
  journal= {arXiv preprint arXiv:2010.03711},
  year   = {2020}
}

Comments

15 pages, including 4 figures and 3 tables

R2 v1 2026-06-23T19:09:09.061Z