A transdimensional Bayesian method to infer the star formation history of resolved stellar populations
arXiv:1308.0945 · doi:10.1093/mnras/stt1444
Abstract
We propose a new method to infer the star formation histories of resolved stellar populations. With photometry one may plot observed stars on a colour-magnitude diagram (CMD) and then compare with synthetic CMDs representing different star formation histories. This has been accomplished hitherto by parametrising the model star formation history as a histogram, usually with the bin widths set by fixed increases in the logarithm of time. A best fit is then found with maximum likelihood methods and we consider the different means by which a likelihood can be calculated. We then apply Bayesian methods by parametrising the star formation history as an unknown number of Gaussian bursts with unknown parameters. This parametrisation automatically provides a smooth function of time. A Reversal Jump Markov Chain Monte Carlo method is then used to find both the most appropriate number of Gaussians, thus avoiding avoid overfitting, and the posterior probability distribution of the star formation rate. We apply our method to artificial populations and to observed data. We discuss the other advantages of the method: direct comparison of different parametrisations and the ability to calculate the probability that a given star is from a given Gaussian. This allows the investigation of possible sub-populations.
Accepted for publication in MNRAS, 1 August 2013. 19 pages, 32 figures
References in corpus (4)
- The effect of massive binaries on stellar populations and supernova progenitors
- Implications of the metallicity dependence of Wolf-Rayet winds
- A maximum likelihood method for fitting colour-magnitude diagrams
- Inverting Color-Magnitude Diagrams to Access Precise Star Cluster Parameters: A Bayesian Approach
Cited by in corpus (22)
- A self-consistent, absolute isochronal age scale for young moving groups in the solar neighbourhood
- The Star Formation Histories of Local Group Dwarf Galaxies I. Hubble Space Telescope / Wide Field Planetary Camera 2 Observations
- BONNSAI: a Bayesian tool for comparing stars with stellar evolution models
- Fast Bayesian Inference for Exoplanet Discovery in Radial Velocity Data
- Deriving star formation histories from photometry using energy balance spectral energy distribution modelling
- A Predicted Correlation Between Age Gradient and Star Formation History in FIRE Dwarf Galaxies
- An environmental analysis of the Type Ib SN 2019yvr and the possible presence of an inflated binary companion
- Star formation history of the solar neighbourhood as told by Gaia
- A high mass progenitor for the Type Ic Supernova 2007gr inferred from its environment
- The SAMI Galaxy Survey: Bayesian Inference for Gas Disk Kinematics using a Hierarchical Gaussian Mixture Model
- Disentangling Overlapping Astronomical Sources using Spatial and Spectral Information
- A novel method to automatically detect and measure the ages of star clusters in nearby galaxies: Application to the Large Magellanic Cloud
- Toward a better understanding of supernova environments: a study of SNe 2004dg and 2012P in NGC 5806 with HST and MUSE
- The stellar population responsible for a kiloparsec size superbubble seen in the JWST "phantom" images of NGC628
- Statistical Fitting of Evolution Models to Rotation Rates of Sun-Like Stars
- A new method for deriving the stellar birth function of resolved stellar populations
- Rotational Variation Allows for Narrow Age Spread in the Extended Main Sequence Turnoff of Massive Cluster NGC 1846
- Estimating the age-metallicity distribution of a stellar sample from the probability distributions of the individual stars
- Star cluster survival in dark matter halos: An old cluster in Eridanus II?
- Measuring Resolved Star Formation Histories from High-Precision Color-Magnitude Diagrams with StarFormationHistories.jl
- Parameter Estimation for Scarce Stellar Populations
- J-PLUS Reconstructing the Milky Way Disc's star formation history with twelve-filter photometry