English

The surface brightness - colour relations based on eclipsing binary stars and calibrated with Gaia EDR3

Solar and Stellar Astrophysics 2021-05-26 v1

Abstract

The surface brightness -- colour relation (SBCR) is a basic tool in establishing precise and accurate distances within the Local Group. Detached eclipsing binary stars with accurately determined radii and trigonometric parallaxes allow for a calibration of the SBCRs with unprecedented accuracy. We analysed four nearby eclipsing binary stars containing late F-type main sequence components: AL Ari, AL Dor, FM Leo and BN Scl. We determined very precise spectroscopic orbits and combined them with high precision ground- and space-based photometry. We derived the astrophysical parameters of their components with mean errors of 0.1% for mass and 0.4% for radius. We combined those four systems with another 24 nearby eclipsing binaries with accurately known radii from the literature for which GaiaGaia EDR3 parallaxes are available, in order to derive the SBCRs. The resulting SBCRs cover stellar spectral types from B9 V to G7 V. For calibrations we used Johnson optical BB and VV, GaiaGaia GBPG_{\rm BP} and GG and 2MASS JHKJHK bands. The most precise relations are calibrated using the infrared KK band and allow to predict angular diameters of A-, F-, and G-type dwarf and subgiant stars with a precision of 1%.

Keywords

Cite

@article{arxiv.2103.02077,
  title  = {The surface brightness - colour relations based on eclipsing binary stars and calibrated with Gaia EDR3},
  author = {D. Graczyk and G. Pietrzyński and C. Gałan and W. Gieren and A. Tkachenko and R. I. Anderson and A. Gallenne and M. Górski and G. Hajdu and M. Kałuszyński and P. Karczmarek and P. Kervella and P. F. L. Maxted and N. Nardetto and W. Narloch and K. Pavlovski and B. Pilecki and W. Pych and J. Southworth and J. Storm and K. Suchomska and M. Taormina and S. Villanova and P. Wielgórski and B. Zgirski and P. Konorski},
  journal= {arXiv preprint arXiv:2103.02077},
  year   = {2021}
}

Comments

Accepted for publication in Astronomy & Astrophysics, 17 pages