English

Using the Gaia excess uncertainty as a proxy for stellar variability and age

Solar and Stellar Astrophysics 2023-08-16 v2 Astrophysics of Galaxies

Abstract

Stars are known to be more active when they are young, resulting in a strong correlation between age and photometric variability. The amplitude variation between stars of a given age is large, but the age-variability relation becomes strong over large groups of stars. We explore this relation using the excess photometric uncertainty in Gaia photometry (VarGVar_{G}, VarBPVar_{BP}, and VarRPVar_{RP}) as a proxy for variability. The metrics follow a Skumanich-like relation, scaling as t0.4\simeq t^{-0.4}. By calibrating against a set of associations with known ages, we show how VarVar of population members can predict group ages within 10-20% for associations younger than \simeq2.5 Gyr. In practice, age uncertainties are larger, primarily due to finite group size. The index is most useful at the youngest ages (<<100 Myr), where the uncertainties are comparable to or better than those derived from a color-magnitude diagram. The index is also widely available, easy to calculate, and can be used at intermediate ages where there are few or no pre- or post-main-sequence stars. We further show how VarVar can be used to find new associations and test if a group of co-moving stars is a real co-eval population. We apply our methods on the Theia groups within 350 pc and find \gtrsim90% are inconsistent with drawing stars from the field and \simeq80% have variability ages consistent with those derived from the CMD. Our finding suggest the great majority of these groups contain real populations.

Keywords

Cite

@article{arxiv.2302.09084,
  title  = {Using the Gaia excess uncertainty as a proxy for stellar variability and age},
  author = {Madyson G. Barber and Andrew W. Mann},
  journal= {arXiv preprint arXiv:2302.09084},
  year   = {2023}
}

Comments

Accepted to ApJ. 19 pages, 9 figures, 3 tables. For associated code, see https://github.com/madysonb/EVA

R2 v1 2026-06-28T08:43:04.072Z