Confidence limits of evolutionary synthesis models. IV Moving forward to a probabilistic formulation
arXiv:astro-ph/0504483 · doi:10.1051/0004-6361:20053283
Abstract
Synthesis models predict the integrated properties of stellar populations. Several problems exist in this field, mostly related to the fact that integrated properties are distributed. To date, this aspect has been either ignored (as in standard synthesis models, which are inherently deterministic) or interpreted phenomenologically (as in Monte Carlo simulations, which describe distributed properties rather than explain them). We approach population synthesis as a problem in probability theory, in which stellar luminosities are random variables extracted from the stellar luminosity distribution function (sLDF). We derive the population LDF (pLDF) for clusters of any size from the sLDF, obtaining the scale relations that link the sLDF to the pLDF. We recover the predictions of standard synthesis models, which are shown to compute the mean of the sLDF. We provide diagnostic diagrams and a simplified recipe for testing the statistical richness of observed clusters, thereby assessing whether standard synthesis models can be safely used or a statistical treatment is mandatory. We also recover the predictions of Monte Carlo simulations, with the additional bonus of being able to interpret them in mathematical and physical terms. We give examples of problems that can be addressed through our probabilistic formalism. Though still under development, ours is a powerful approach to population synthesis. In an era of resolved observations and pipelined analyses of large surveys, this paper is offered as a signpost in the field of stellar populations.
Accepted by A&A. Substantially modified with respect to the 1st draft. 26 pages, 14 figs
References in corpus (4)
- Evolutionary Stellar Population Synthesis at High Spectral Resolution: Optical Wavelengths
- A High-Resolution Stellar Library for Evolutionary Population Synthesis
- On the importance of the few most massive stars: the ionizing cluster of NGC 588
- Massive Stellar Content of Giant HII Regions in M 33 and M 101
Cited by in corpus (81)
- Fitting the integrated Spectral Energy Distributions of Galaxies
- The Big Problems in Star Formation: the Star Formation Rate, Stellar Clustering, and the Initial Mass Function
- SLUG - Stochastically Lighting Up Galaxies I: Methods and Validating Tests
- SLUG -- Stochastically Lighting Up Galaxies. III: A Suite of Tools for Simulated Photometry, Spectroscopy, and Bayesian Inference with Stochastic Stellar Populations
- PopStar I: Evolutionary synthesis models description
- The Effects of Stellar Rotation. I. Impact on the Ionizing Spectra and Integrated Properties of Stellar Populations
- The ACS Virgo Cluster Survey. XIV. Analysis of Color-Magnitude Relations in Globular Cluster Systems
- Accounting for Stochastic Fluctuations when Analysing Integrated Light of Star Clusters. I: First Systematics
- The star cluster - field star connection in nearby spiral galaxies. II. Field star and cluster formation histories and their relation
- Analysing star cluster populations with stochastic models: the HST/WFC3 sample of clusters in M83
- H Morphologies of Star Clusters: A LEGUS study of HII region evolution timescales and stochasticity in low mass clusters
- An IMF Study of the Dwarf Starburst Galaxy NGC 4214
- Using population synthesis of massive stars to study the interstellar medium near OB associations
- PHANGS-HST: Star Cluster Spectral Energy Distribution Fitting with CIGALE
- Massive stars reveal variations of the stellar initial mass function in the Milky Way stellar clusters
- Chemical consequences of low star formation rates: stochastically sampling the IMF
- The Young, Massive, Star Cluster Sandage-96 After the Explosion of SN 2004dj in NGC 2403
- MASSCLEANage -- Stellar Cluster Ages from Integrated Colors --
- Star Cluster Properties in Two LEGUS Galaxies Computed with Stochastic Stellar Population Synthesis Models
- Probing the evolving massive star population in Orion with kinematic and radioactive tracers
- Medium resolution 2.3 micron spectroscopy of the massive Galactic open cluster Westerlund 1
- Testing spectral models for stellar populations with star clusters: II. Results
- Biases on initial mass function determinations. II. Real multiple systems and chance superpositions
- The stochastic nature of stellar population modelling
- Biases on initial mass function determinations. III. Cluster masses derived from unresolved photometry
- H Morphologies of Star Clusters in 16 LEGUS Galaxies: Constraints on HII region evolution timescales
- Ages and Metallicities of Extragalactic Globular Clusters from Spectral and Photometric Fits of Stellar Population Synthesis Models
- MASSCLEAN - MASSive CLuster Evolution and ANalysis Package - Description and Tests
- The cluster birthline in M33
- Deriving physical parameters of unresolved star clusters. I. Age, mass, and extinction degeneracies
- MASSCLEANcolors - Mass Dependent Integrated Colors for Stellar Clusters Derived from 30 Million Monte Carlo Simulations -
- The NGC 5253 star cluster system. I. Standard modelling and infrared-excess sources
- Near-IR spectroscopic ages of massive star clusters in M82
- The photometric evolution of dissolving star clusters: II. Realistic models. Colours and M/L ratios
- The population of Young Stellar Clusters throughout the disk of M33
- Fluorescent excitation of Balmer lines in gaseous nebulae: case D
- Young and intermediate-age massive star clusters
- The emergence of the galactic stellar mass function from a non-universal IMF in clusters
- sMILES SSPs: A Library of Semi-Empirical MILES Stellar Population Models with Variable [/Fe] Abundances
- Star cluster versus field star formation in the nucleus of the prototype starburst galaxy M82
- Heating of blue compact dwarf galaxies: gas distribution and photoionization by stars in I Zw 18
- Boosting Lya and HeII 1640A Line Fluxes from Pop III Galaxies: Stochastic IMF Sampling and Departures from Case-B
- The Panchromatic Hubble Andromeda Treasury III. Measuring Ages and Masses of Partially Resolved Stellar Clusters
- Open cluster stability and the effects of binary stars
- The LBT Panoramic View on the Recent Star-Formation Activity in IC2574
- Young LMC clusters: the role of red supergiants and multiple stellar populations in their integrated light and CMDs
- The 100 Myr Star Formation History of NGC 5471 from Cluster and Resolved Stellar Photometry
- Crucial aspects of the initial mass function (I): The statistical correlation between the total mass of an ensemble of stars and its most massive star
- The star cluster - field star connection in nearby spiral galaxies I. Data analysis techniques and application to NGC 4395
- Auto-consistent metallicity and star formation history of the nearest blue compact dwarf galaxy NGC 6789
- HR-pyPopStar: high wavelength-resolution stellar populations evolutionary synthesis model
- Mapping the Recent Star Formation History of the Disk of M51
- AGB Connection and Ultraviolet Luminosity Excess in Elliptical Galaxies
- No compelling evidence of significant early star cluster disruption in the Large Magellanic Cloud
- On surface brightness fluctuations: probabilistic and statistical bases I: Stellar population and theoretical SBF
- An Assessment of Broadband Optical Colours as Age Indicators for Star Clusters
- Modeling the ionizing spectra of H ii regions: individual stars versus stellar ensembles
- Bayesian isochrone fitting and stellar ages
- SLUG IV: A Novel Forward-Modelling Method to Derive the Demographics of Star Clusters
- Surface Brightness Fluctuation spectra to constrain stellar population properties
- Galactic Population Synthesis of Radioactive Nucleosynthesis Ejecta
- Systematic differences in simple stellar population model results: Application to the M31 globular-like cluster system
- On emission-line spectra obtained from evolutionary synthesis models II. Scale-relations and the estimation of mass dependences
- On the precision of full-spectrum fitting of simple stellar populations. II. The dependence on star cluster mass in the wavelength range 0.3-5.0 m
- On recent SFR calibrations and the constant SFR approximation
- Modelling the composition of a young star cluster ejecta
- Crucial aspects of the initial mass function (II): The inference of total quantities from partial information on a cluster
- Probabilistic distributions of values for ultra-faint dwarf spheroidal galaxies: stochastic samplings of the IMF
- Surface Brightness Fluctuations to constrain secondary stellar populations: Revealing very low-metallicity stars in massive galaxies
- Hierarchical Bayesian approach for estimating physical properties in nearby galaxies: Age Maps (Paper II)
- On the distribution of initial masses of stellar clusters inferred from synthesis models
- Testing the Surface Brightness Fluctuation Method on Dwarf Galaxies in the COSMOS Field
- Evolutionary synthesis models as a tool and guide towards the first galaxies
- Synthesis models in a probabilistic framework: metrics of fitting
- Modelling of surface brightness fluctuation measurements: Methodology, uncertainty, and recommendations
- Sampling effects in the emission line spectra of HII regions
- Stellar associations powering HII regions $\unicode{x2013}$ II. Escape fraction of ionizing photons
- Intrinsic colors and ages of extremely red elliptical galaxies at high redshift
- What do dynamical cluster masses really tell us about dynamics?
- Oxygen and silicon abundances in Cygnus OB2: Chemical homogeneity in a sample of OB slow rotators
- Semiresolved Stellar Populations as Distance Indicators