English

Using Magnetic Activity and Galactic Dynamics to Constrain the Ages of M Dwarfs

Astrophysics 2015-05-13 v1

Abstract

We present a study of the dynamics and magnetic activity of M dwarfs using the largest spectroscopic sample of low-mass stars ever assembled. The age at which strong surface magnetic activity (as traced by H-alpha) ceases in M dwarfs has been inferred to have a strong dependence on mass (spectral type, surface temperature) and explains previous results showing a large increase in the fraction of active stars at later spectral types. Using spectral observations of more than 40000 M dwarfs from the Sloan Digital Sky Survey, we show that the fraction of active stars decreases as a function of vertical distance from the Galactic plane (a statistical proxy for age), and that the magnitude of this decrease changes significantly for different M spectral types. Adopting a simple dynamical model for thin disk vertical heating, we assign an age for the activity decline at each spectral type, and thus determine the activity lifetimes for M dwarfs. In addition, we derive a statistical age-activity relation for each spectral type using the dynamical model, the vertical distance from the Plane and the H-alpha emission line luminosity of each star (the latter of which also decreases with vertical height above the Galactic plane).

Keywords

Cite

@article{arxiv.0812.1223,
  title  = {Using Magnetic Activity and Galactic Dynamics to Constrain the Ages of M Dwarfs},
  author = {Andrew A. West and Suzanne L. Hawley and John J. Bochanski and Kevin R. Covey and Adam J. Burgasser},
  journal= {arXiv preprint arXiv:0812.1223},
  year   = {2015}
}

Comments

8 pages, 5 figures, to appear in the proceedings of IAU 258: The Ages of Stars