OO Dra: an Algol-type binary formed through an extremely helium-poor mass accretion revealed by asteroseismology
Abstract
Based on the two-minutes TESS data, we analyzed intrinsic oscillations of the primary component and identified seven confident independent Scuti frequencies (, , , , , , and ). Both of single-star evolutionary models and mass-accreting models are computed to reproduce the Scuti freqiencies. Fitting results of them match well with each other. The stellar parameters of the primary star yielded by asteroseismology are = , = 0.011, = , = , = K, = , which match well with the dynamic ones by the binary model. Furthermore, our asteroseismic results show that OO Dra is another Algol system that has just undergone the rapid mass-transfer stage. Fitting results of single-star evlutionary models indicate that the pulsator is helium-poor star with an age of 8.22 Myr, and the further mass-accreting models show that the primary star looks like an almost unevolved star formed by an extremely helium-poor mass accretion in Case A evolutionary scenario.
Keywords
Cite
@article{arxiv.2108.02912,
title = {OO Dra: an Algol-type binary formed through an extremely helium-poor mass accretion revealed by asteroseismology},
author = {Xinghao Chen and Xiaobin Zhang and Yan Li and Changqing Luo and Xuzhi Li and Jie Su and Xuefei Chen},
journal= {arXiv preprint arXiv:2108.02912},
year = {2021}
}
Comments
25 pages, 8 figures, 7 tables. accepted for publication by ApJ. arXiv admin note: text overlap with arXiv:2004.09916