The Chemical Signature of a Relic Star Cluster in the Sextans Dwarf Spheroidal Galaxy - Implications for Near-Field Cosmology
arXiv:1201.5376 · doi:10.1088/0004-637X/759/2/111
Abstract
We present tentative evidence for the existence of a dissolved star cluster at [Fe/H]=-2.7 in the Sextans dwarf spheroidal galaxy. We use the technique of chemical tagging to identify stars that are highly clustered in a multi-dimensional chemical abundance space (C-space). In a sample of six stars, three, possibly four stars are identified as potential cluster stars. The initial stellar mass of the parent cluster is estimated from two independent observations to M*,init=1.9^{+1.5}_{-0.9} (1.6^{+1.2}_{-0.8}) x 10^5 M_sol, assuming a Salpeter (Kroupa) initial mass function (IMF). If corroborated by follow-up spectroscopy, this star cluster is the most metal-poor system identified to date. Chemical signatures of remnant clusters in dwarf galaxies like Sextans provide us with a very powerful probe to the high-redshift Universe. From available observational data, we argue that the average star cluster mass in the majority of the newly discovered ultra-faint dwarf galaxies was notably lower than it is in the Galaxy today and possibly lower than in the more luminous, classical dwarf spheroidal galaxies. Furthermore, the mean cumulative metallicity function of the dwarf spheroidals falls below that of the ultra-faints, which increases with increasing metallicity as predicted from our stochastic chemical evolution model. These two findings, together with a possible difference in the <[Mg/Fe]> ratio suggest that the ultra-faint dwarf galaxy population, or a significant fraction thereof, and the dwarf spheroidal population, were formed in different environments and would thus be distinct in origin.
18 pages, 8 figures, new Fig. 5, some clarifications, references added, accepted for publication in the ApJ
References in corpus (23)
- A Method for Measuring (Slopes of) the Mass Profiles of Dwarf Spheroidal Galaxies
- Two Stellar Components in the Halo of the Milky Way
- The Observed properties of Dark Matter on small spatial scales
- The Tidal Evolution of Local Group Dwarf Spheroidals
- Protostar Formation in the Early Universe
- The Formation of Population III Binaries from Cosmological Initial Conditions
- Resolving the Formation of Protogalaxies. III. Feedback from the First Stars
- The NIR Ca II triplet at low metallicity - Searching for extremely low-metallicity stars in classical dwarf galaxies
- A high resolution VLT/FLAMES study of individual stars in the centre of the Fornax dwarf spheroidal galaxy
- Probing the Formation of the First Low-Mass Stars with Stellar Archaeology
- The Chemical Evolution of the Draco Dwarf Spheroidal Galaxy
- Multi-Element Abundance Measurements from Medium-Resolution Spectra. II. Catalog of Stars in Milky Way Dwarf Satellite Galaxies
- Complexity on Small Scales III: Iron and alpha Element Abundances in the Carina Dwarf Spheroidal Galaxy
- Scaling Relations and the Fundamental Line of the Local Group Dwarf Galaxies
- Multi-Element Abundance Measurements from Medium-Resolution Spectra. IV. Alpha Element Distributions in Milky Way Dwarf Satellite Galaxies
- VLT/UVES Spectroscopy of Individual Stars in Three Globular Clusters in the Fornax Dwarf Spheroidal Galaxy
- Chemical Homogeneity in Collinder 261 and Implications for Chemical Tagging
- Converting H Luminosities into Star Formation Rates
- Uncovering the Chemical Signature of the First Stars in the Universe
- Two distinct halo populations in the solar neighborhood. III. Evidence from stellar ages and orbital parameters
- An inhomogeneous model for the Galactic halo: a possible explanation for the spread observed in s- and r-process elements
- On Kinematic Substructure in the Sextans Dwarf Spheroidal Galaxy
- Primordial Stellar Feedback and the Origin of Hyper Metal-Poor Stars
Cited by in corpus (26)
- Star Clusters Across Cosmic Time
- The First Population II Stars Formed in Externally Enriched Mini-halos
- Confined Population III Enrichment and the Prospects for Prompt Second-Generation Star Formation
- Stellar Abundances for Galactic Archaeology Database IV - Compilation of Stars in Dwarf Galaxies
- A Common Origin for Globular Clusters and Ultra-faint Dwarfs in Simulations of the First Galaxies
- The chemical evolution of the Bootes I ultra-faint dwarf galaxy
- Prospects for chemically tagging stars in the Galaxy
- The Distribution of Alpha Elements in Andromeda Dwarf Galaxies
- Quantitative chemical tagging, stellar ages and the chemo-dynamical evolution of the Galactic disc
- Metal Mixing and Ejection in Dwarf Galaxies is Dependent on Nucleosynthetic Source
- Enrichment in r-process elements from multiple distinct events in the early Draco dwarf spheroidal galaxy
- Structural analysis of the Sextans dwarf spheroidal galaxy
- APOGEE chemical tagging constraint on the maximum star cluster mass in the -enhanced Galactic disk
- Carbon and nitrogen abundances of individual stars in the Sculptor dwarf spheroidal galaxy
- APOGEE spectroscopic evidence for chemical anomalies in dwarf galaxies: The case of M~54 and Sagittarius
- Is Sextans dwarf galaxy in a scalar field dark matter halo?
- Star Formation in Ultrafaint Dwarfs: Continuous or Single-age Bursts?
- Segue 1 - A Compressed Star Formation History Before Reionization
- Ultrafaint Dwarfs - Star Formation and Chemical Evolution in the Smallest Galaxies
- Sextans' cold substructures as a dynamical judge: Core, Cusp or MOND?
- Action-based models for dwarf spheroidal galaxies and globular clusters
- Chemical abundance analysis of extremely metal-poor stars in the Sextans dwarf spheroidal galaxy
- The Epoch of Assembly of Two Galaxy Groups: A comparative study
- A Possible Relic Star Cluster in the Sextans Dwarf Galaxy
- The Chemical Evolution of Very Metal-Poor Damped Lyman- Systems
- Detection of Chemo-Kinematical Structures in Leo I