Asteroseismic age estimates of RGB stars in open clusters. A statistical investigation of different estimation methods
arXiv:1809.08186 · doi:10.1051/0004-6361/201833928
Abstract
We performed a theoretical investigation focused on the age estimate of RGB stars in OCs based on mixed classical surface and asteroseismic parameters. We evaluated the performances of three widely adopted methods (pure geometrical fit, maximum likelihood approach, and a single stars fit) in recovering stellar parameters. Artificial OCs were generated by means of a Monte Carlo procedure for two different ages (7.5 and 9.0 Gyr) and two different choices of the number of stars in the RGB evolutionary phase (35 and 80). The geometrical approach overestimated the age by about 0.3 and 0.2 Gyr for true ages of 7.5 and 9.0 Gyr, respectively. The ML approach provided similar biases (0.1 and 0.2 Gyr) but with a variance reduced by a factor of between two and four with respect to geometrical fit. The independent fit of single stars showed a very large variance. The most important difference between geometrical and ML approaches was the robustness against observational errors. For the geometrical method, we found that estimations starting from the same sample but with different Gaussian perturbations on the observables had about 0.3 Gyr random variability from one Monte Carlo run to another (45% of the intrinsic variability due to observational errors). On the other hand, for the ML method, this value was about 65% and 90% of the simulations failed to include the true parameter values in their estimated 1 sigma credible interval. Finally, we compared the performance of the three fitting methods for single RGB-star age estimation. The variability owing to the choice of the fitting method was minor, being about 15% of the variability caused by observational uncertainties.
Accepted for publication in A&A. Abstract abridged
References in corpus (16)
- The APOKASC Catalog: An Asteroseismic and Spectroscopic Joint Survey of Targets in the Kepler Fields
- Testing the asteroseismic scaling relations for Red Giants with Eclipsing Binaries Observed by Kepler
- Radius determination of solar-type stars using asteroseismology: What to expect from the Kepler mission
- Stroemgren survey for Asteroseismology and Galactic Archaeology: let the SAGA begin
- Inverting Color-Magnitude Diagrams to Access Precise Star Cluster Parameters: A Bayesian Approach
- Changing the Scaling Relation: The Need For a Mean Molecular Weight Term
- Confronting uncertainties in stellar physics: calibrating convective overshooting with eclipsing binaries
- Statistical errors and systematic biases in the calibration of the convective core overshooting with eclipsing binaries. A case study: TZ Fornacis
- The Age and Distance of the Kepler Open Cluster NGC 6811 from an Eclipsing Binary, Turnoff Star Pulsation, and Giant Asteroseismology
- How accurate are stellar ages based on stellar models? II. The impact of asteroseismology
- Asteroseismic Study on Cluster Distance Moduli for RGB Stars in NGC 6791 and NGC 6819
- Theoretical uncertainties on the radius of low- and very-low mass stars
- On the age of Galactic bulge microlensed dwarf and subgiant stars
- Overshooting calibration and age determination from evolved binary system
- Grid-based estimates of stellar ages in binary systems. SCEPtER: Stellar CharactEristics Pisa Estimation gRid
- Bayesian isochrone fitting and stellar ages
Cited by in corpus (5)
- The Helium Abundance of NGC 6791 from Modeling of Stellar Oscillations
- Goodness-of-fit test for isochrone fitting in the Gaia era. Statistical assessment of the error distribution
- Impact of measurement errors on the inferred stellar asteroseismic ages. Statistical models for intermediate age main sequence and red giant branch stars
- Uncertainties in asteroseismic grid-based estimates of the ages of halo stars
- Mixing-length calibration from field stars. An investigation on statistical errors, systematic biases, and spurious metallicity trends