English

Fundamental parameters for dEB SB2 binary system J064726.39+223431.6

Solar and Stellar Astrophysics 2022-12-20 v2

Abstract

We present a study of eclipsing binary J064726.39+223431.6 using spectra from the LAMOST-MRS and TESS photometry. We use full-spectrum fitting to derive radial velocities and spectral parameters: TeffA,B=6177,5820{T_{\rm eff}}_{A,B}=6177,\,5820 K, vsiniA,B=59,50 \kmsv \sin{i}_{A,B}=59,\,50~\kms and [Fe/H]A,B=0.19{\rm [Fe/H]}_{A,B}=-0.19 dex. The orbital solution and light curve analysis suggest that it is a close pair of fast rotating stars on circular orbit. We measure their masses to be MA,B=1.307±0.007,1.129±0.005MM_{A,B}=1.307\pm0.007,\, 1.129\pm0.005\,M_\odot and their radii to be RA,B=1.405±0.052,1.219±0.060RR_{A,B}=1.405\pm0.052,\, 1.219\pm0.060\,R_\odot resulting in surface gravities of loggA,B=4.259±0.033,4.319±0.042\log{g}_{A,B}=4.259\pm0.033,\,4.319\pm0.042 (cgs). Theoretical models cannot match all of these properties, predicting significantly higher Teff{T_{\rm eff}} for a given metallicity. Derived age of the system 1.56 Gyr indicates that both components are younger than Sun, which contradicts to much longer orbit's circularisation timescale.

Keywords

Cite

@article{arxiv.2209.12548,
  title  = {Fundamental parameters for dEB SB2 binary system J064726.39+223431.6},
  author = {Mikhail Kovalev and Song Wang and Xuefei Chen and Zhanwen Han},
  journal= {arXiv preprint arXiv:2209.12548},
  year   = {2022}
}

Comments

submitted to MNRAS. arXiv admin note: text overlap with arXiv:2204.10680

R2 v1 2026-06-28T02:05:24.714Z