Stellar dating using chemical clocks and Bayesian inference
arXiv:2201.05228 · doi:10.1051/0004-6361/202141125
Abstract
Dating stars is a major challenge with a deep impact on many astrophysical fields. One of the most promising techniques for this is using chemical abundances. Recent space- and ground-based facilities have improved the quantity of stars with accurate observations. This has opened the door for using Bayesian inference tools to maximise the information we can extract from them. Our aim is to present accurate and reliable stellar age estimates of FGK stars using chemical abundances and stellar parameters. We used one of the most flexible Bayesian inference techniques (hierarchical Bayesian models) to exceed current possibilities in the use of chemical abundances for stellar dating. Our model is a data-driven model. We used a training set that has been presented in the literature with ages estimated with isochrones and accurate stellar abundances and general characteristics. The core of the model is a prescription of certain abundance ratios as linear combinations of stellar properties including age. We gathered four different testing sets to assess the accuracy, precision, and limits of our model. We also trained a model using chemical abundances alone. We found that our age estimates and those coming from asteroseismology, other accurate sources, and also with ten Gaia benchmark stars agree well. The mean absolute difference of our estimates compared with those used as reference is 0.9 Ga, with a mean difference of 0.01 Ga. When using open clusters, we reached a very good agreement for Hyades, NGC 2632, Ruprecht 147, and IC4651. We also found outliers that are a reflection of chemical peculiarities and/or stars at the limit of the validity ranges of the training set. The model that only uses chemical abundances shows slightly worse mean absolute difference (1.18 Ga) and mean difference (-0.12 Ga).
15 pages, 15 figures. Accepted for publication in Astronomy & Astrophysics
References in corpus (29)
- The Gaia mission
- Spectroscopic parameters for 451 stars in the HARPS GTO planet search program. Stellar [Fe/H] and the frequency of exo-Neptunes
- Basic physical parameters of a selected sample of evolved stars
- ADIPLS -- the Aarhus adiabatic oscillation package
- A new code for automatic determination of equivalent widths: Automatic Routine for line Equivalent widths in stellar Spectra (ARES)
- Standing on the shoulders of Dwarfs: the Kepler asteroseismic LEGACY sample II - radii, masses, and ages
- Updated parameters of 1743 open clusters based on Gaia DR2
- ASTEC -- the Aarhus STellar Evolution Code
- High-precision abundances of elements in solar twin stars: Trends with stellar age and elemental condensation temperature
- Chemical abundances of 1111 FGK stars from the HARPS GTO planet search program II: Cu, Zn, Sr, Y, Zr, Ba, Ce, Nd and Eu
- The Solar Twin Planet Search. I. Fundamental parameters of the stellar sample
- Abundance to age ratios in the HARPS-GTO sample with Gaia DR2: Chemical clocks for a range of [Fe/H]
- Ground-based CCD astrometry with wide field imagers. II. A star catalogue for M67: [email protected] MPG/ESO astrometry, FLAMES@VLT radial velocities
- The orbits of open clusters in the Galaxy
- High-precision abundances of elements in solar-type stars. Evidence of two distinct sequences in abundance-age relations
- A Stellar Model-fitting Pipeline for Asteroseismic Data from the Kepler Mission
- The Gaia-ESO survey: the non-universality of the age-chemical-clocks-metallicity relations in the Galactic disc
- High-precision abundances of Sc, Mn, Cu, and Ba in solar twins. Trends of element ratios with stellar age
- The chemical compositions of solar twins in the open cluster M67
- On the metallicity dependance of the [Y/Mg] - age relation for solar type stars
- High-precision abundances of elements in Kepler LEGACY stars. Verification of trends with stellar age
- Differential abundances of open clusters and their tidal tails: chemical tagging and chemical homogeneity
- Constraining the solar neighbourhood age-metallicity relation from white dwarf-main sequence binaries
- Multi-instrumental view of magnetic fields and activity of Eridani with SPIRou, NARVAL, and TESS
- Magnetic-buoyancy-induced mixing in AGB Stars: a theoretical explanation of the non-universal [Y/Mg]-age relation
- The AMBRE Project: Solar neighbourhood chemodynamical constraints on Galactic disc evolution
- The evolution of lithium in FGK dwarf stars: The Li rotation connection and the Li desert
- Testing abundance-age relations beyond solar analogues with Kepler LEGACY stars
- Atomic diffusion and mixing in old stars VII. Abundances of Mg, Ti, and Fe in M30