Full spectral fitting of Milky Way and M31 globular clusters: ages and metallicities
arXiv:1211.1216 · doi:10.1051/0004-6361/201220336
Abstract
Context: The formation and evolution of disk galaxies are long standing questions in Astronomy. Understanding the properties of globular cluster systems can lead to important insights on the evolution of its host galaxy. Aims: We aim to obtain the stellar population parameters - age and metallicity - of a sample of M31 and Galactic globular clusters. Studying their globular cluster systems is an important step towards understanding their formation and evolution in a complete way. Methods: Our analysis employs a modern pixel-to-pixel spectral fitting technique to fit observed integrated spectra to updated stellar population models. By comparing observations to models we obtain the ages and metallicities of their stellar populations. We apply this technique to a sample of 38 globular clusters in M31 and to 41 Galactic globular clusters, used as a control sample. Results: Our sample of M31 globular clusters spans ages from 150 Myr to the age of the Universe. Metallicities [Fe/H] range from -2.2 dex to the solar value. The age-metallicity relation obtained can be described as having two components: an old population with a flat age-[Fe/H] relation, possibly associated with the halo and/or bulge, and a second one with a roughly linear relation between age and metallicity, higher metallicities corresponding to younger ages, possibly associated with the M31 disk. While we recover the very well known Galactic GC metallicity bimodality, our own analysis of M31's metallicity distribution function (MDF) suggests that both GC systems cover basically the same [Fe/H] range yet M31's MDF is not clearly bimodal. These results suggest that both galaxies experienced different star formation and accretion histories.
A&A, in press
References in corpus (15)
- Evolutionary Stellar Population Synthesis with MILES. Part I: The Base Models and a New Line Index System
- Population Synthesis in the Blue IV: Accurate Model Predictions for Lick Indices and UBV Colors in Single Stellar Populations
- Medium-resolution Isaac Newton Telescope library of empirical spectra - II. The stellar atmospheric parameters
- Spectroscopic ages and metallicities of stellar populations: validation of full spectrum fitting
- Spectral models for solar-scaled and alpha-enhanced stellar populations
- The SLUGGS Survey: Calcium Triplet-based Spectroscopic Metallicities for Over 900 Globular Clusters
- A large stellar evolution database for population synthesis studies. IV. Integrated properties and spectra
- Reddening, Colour and Metallicity of the M31 Globular Cluster System
- Wide-Field Survey of Globular Clusters in M31. II. Kinematics of the Globular Cluster System
- The Age, Metallicity and Alpha-Element Abundance of Galactic Globular Clusters from Single Stellar Population Models
- Ages and Metallicities of Extragalactic Globular Clusters from Spectral and Photometric Fits of Stellar Population Synthesis Models
- The environment of formation as a second parameter for globular cluster classification
- New age estimates of M31 globular clusters from multi-colour photometry
- The Outer Halo Globular Clusters of M31
- Systematic differences in simple stellar population model results: Application to the M31 globular-like cluster system
Cited by in corpus (24)
- Evolutionary stellar population synthesis with MILES - II. Scaled-solar and α-enhanced models
- A new library of theoretical stellar spectra with scaled-solar and alpha-enhanced mixtures
- Globular Cluster Systems in Brightest Cluster Galaxies. III: Beyond Bimodality
- The Panchromatic Hubble Andromeda Treasury V: Ages and Masses of the Year 1 Stellar Clusters
- Star Clusters in M31: VII. Global Kinematics and Metallicity Subpopulations of the Globular Clusters
- Being WISE I: Validating Stellar Population Models and M/L ratios at 3.4 and 4.6 microns
- A Possible Solution for the Relation of Globular Clusters in M31. II. the Age-Metallicity Relation
- How well can we determine ages and chemical abundances from spectral fitting of integrated light spectra?
- Testing Stellar Population Fitting Ingredients with Globular Clusters I: Stellar Libraries
- The LAMOST spectroscopic survey of star clusters in M31. II. Metallicities, ages and masses
- MOCCA: Dynamics and evolution of binary stars of multiple stellar populations in tidally filling and underfilling globular star clusters
- The VMC survey - XVI. Spatial variation of the cluster-formation activity in the innermost regions of the Large Magellanic Cloud
- On the absolute age of the metal-rich globular M71 (NGC 6838): I. optical photometry
- No compelling evidence of significant early star cluster disruption in the Large Magellanic Cloud
- Estimating ages and metallicities of M31 star clusters from LAMOST DR6
- Gamma-ray spectral properties of the Galactic globular clusters: constraint on the numbers of millisecond pulsars
- Gemini/GMOS Spectroscopy of Globular Clusters in the Merger Remnant Galaxy M85
- On the Origin of Metal-poor Stars in the Solar Neighborhood
- Validation of optimised population synthesis through mock spectra and Galactic globular clusters
- Molecular Gas of the Most Massive Spiral Galaxies I: a Case Study of NGC 5908
- Inferring the Helium abundance of extragalactic Globular Clusters using Integrated Spectra
- Globular clusters as cosmic clocks: new cosmological hints from their integrated light
- Time to Sparkler. Accurate ages of lensed globular clusters at with JWST photometry
- Study of Integrated Spectra of Four Globular Clusters in M31