Calibrating Gyrochronology using Kepler Asteroseismic targets
arXiv:1502.06965 · doi:10.1093/mnras/stv423
Abstract
Among the available methods for dating stars, gyrochronology is a powerful one because it requires knowledge of only the star's mass and rotation period. Gyrochronology relations have previously been calibrated using young clusters, with the Sun providing the only age dependence, and are therefore poorly calibrated at late ages. We used rotation period measurements of 310 Kepler stars with asteroseismic ages, 50 stars from the Hyades and Coma Berenices clusters and 6 field stars (including the Sun) with precise age measurements to calibrate the gyrochronology relation, whilst fully accounting for measurement uncertainties in all observable quantities. We calibrated a relation of the form , where is rotation period in days, is age in Myr, and are magnitudes and , and are the free parameters of our model. We found , and . Markov Chain Monte Carlo methods were used to explore the posterior probability distribution functions of the gyrochronology parameters and we carefully checked the effects of leaving out parts of our sample, leading us to find that no single relation beween rotation period, colour and age can adequately describe all the subsets of our data. The Kepler asteroseismic stars, cluster stars and local field stars cannot all be described by the same gyrochronology relation. The Kepler asteroseismic stars may be subject to observational biases, however the clusters show unexpected deviations from the predicted behaviour, providing concerns for the overall reliability of gyrochronology as a dating method.
Accepted for publication in MNRAS
References in corpus (9)
- Improved Age Estimation for Solar-Type Dwarfs Using Activity-Rotation Diagnostics
- Toroidal versus poloidal magnetic fields in Sun-like stars: a rotation threshold
- Exoplanet population inference and the abundance of Earth analogs from noisy, incomplete catalogs
- Inferring the eccentricity distribution
- Asteroseismology of the solar analogs 16 Cyg A & B from Kepler observations
- Obliquities of Kepler Stars: Comparison of Single- and Multiple-Transit Systems
- Models of alpha Centauri A and B with and without seismic constraints: time dependence of the mixing-length parameter
- The Albedos of Kepler's Close-in super-Earths
- A massive white dwarf member of the Coma Berenices Open Cluster