English

Absolute Magnitude Calibration for W UMa-Type Systems Based on Gaia Data

Solar and Stellar Astrophysics 2017-09-06 v1

Abstract

Tycho-Gaia Astrometric Solution (TGAS) parallax data are used to determine absolute magnitudes MVM_V for 318 W~UMa-type (EW) contact binary stars. A very steep (slope 9\simeq -9), single-parameter (logP\log{P}), linear calibration can be used to predict MVM_V to about 0.1 -- 0.3 mag over the whole range of accessible orbital period, 0.22 ⁣< ⁣P ⁣< ⁣0.880.22\!<\!P\!<\!0.88 days. A similar calibration for the most common systems with 0.275 ⁣< ⁣P ⁣< ⁣0.5750.275\!<\!P\!<\!0.575 days predicts MVM_V values to about 0.06 -- 0.16 mag. For orbital period values both shorter and longer than the central range, the period dependence is respectively steeper and shallower, i.e.\ the binaries are fainter in MVM_V than predicted by the whole-range, linear law. The steepness of the relation for short-period systems implies important consequences for the detectability of the faintest binaries defining the short-period cut-off of the period distribution. Although the scatter around the linear logP\log{P}-fit is fairly large (0.2 -- 0.4 mag), the current data do not support the inclusion of a B ⁣ ⁣VB\!-\!V color term in the calibration.

Keywords

Cite

@article{arxiv.1708.01097,
  title  = {Absolute Magnitude Calibration for W UMa-Type Systems Based on Gaia Data},
  author = {Nicole M. Mateo and Slavek M. Rucinski},
  journal= {arXiv preprint arXiv:1708.01097},
  year   = {2017}
}

Comments

17 pages, 4 figures, accepted by AJ 2 Aug.2017

R2 v1 2026-06-22T21:05:37.160Z