English

OO Dra: an Algol-type binary formed through an extremely helium-poor mass accretion revealed by asteroseismology

Solar and Stellar Astrophysics 2021-10-27 v1

Abstract

Based on the two-minutes TESS data, we analyzed intrinsic oscillations of the primary component and identified seven confident independent δ\delta Scuti frequencies (f1f_1, f2f_2, f3f_3, f4f_4, f7f_7, f11f_{11}, and f12f_{12}). Both of single-star evolutionary models and mass-accreting models are computed to reproduce the δ\delta Scuti freqiencies. Fitting results of them match well with each other. The stellar parameters of the primary star yielded by asteroseismology are MM = 1.920.02+0.101.92^{+0.10}_{-0.02} MM_{\odot}, ZZ = 0.0110.001+0.006^{+0.006}_{-0.001}, RR = 2.0680.007+0.0502.068^{+0.050}_{-0.007} RR_{\odot}, logg\log g = 4.0900.002+0.0104.090^{+0.010}_{-0.002}, TeffT_{\rm eff} = 8346320+2448346^{+244}_{-320} K, LL = 18.652.82+3.3118.65^{+3.31}_{-2.82} LL_{\odot}, 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 8.221.33+0.12^{+0.12}_{-1.33} 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