Exploring the Universe with Metal-Poor Stars
arXiv:1108.4692 · doi:10.1007/978-3-642-32362-1_8
Abstract
The early chemical evolution of the Galaxy and the Universe is vital to our understanding of a host of astrophysical phenomena. Since the most metal-poor Galactic stars (with metallicities down to [Fe/H]\sim-5.5) are relics from the high-redshift Universe, they probe the chemical and dynamical conditions of the Milky Way and the origin and evolution of the elements through nucleosynthesis. They also provide constraints on the nature of the first stars, their associated supernovae and initial mass function, and early star and galaxy formation. The Milky Way's dwarf satellites contain a large fraction (~30%) of the known most metal-poor stars that have chemical abundances that closely resemble those of equivalent halo stars. This suggests that chemical evolution may be universal, at least at early times, and that it is driven by massive, energetic SNe. Some of these surviving, ultra-faint systems may show the signature of just one such PopIII star; they may even be surviving first galaxies. Early analogs of the surviving dwarfs may thus have played an important role in the assembly of the old Galactic halo whose formation can now be studied with stellar chemistry. Following the cosmic evolution of small halos in simulations of structure formation enables tracing the cosmological origin of the most metal-poor stars in the halo and dwarf galaxies. Together with future observations and additional modeling, many of these issues, including the reionization history of the Milky Way, may be constrained this way. The chapter concludes with an outlook about upcoming observational challenges and ways forward is to use metal-poor stars to constrain theoretical studies.
34 pages, 11 figures. Book chapter to appear in "The First Galaxies - Theoretical Predictions and Observational Clues", 2012 by Springer, eds. V. Bromm, B. Mobasher, T. Wiklind
References in corpus (33)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- The Kinematics of the Ultra-Faint Milky Way Satellites: Solving the Missing Satellite Problem
- Are the Magellanic Clouds on their First Passage about the Milky Way?
- Nucleosynthetic signatures of the first stars
- Tracing Galaxy Formation with Stellar Halos II: Relating Substructure in Phase- and Abundance-Space to Accretion Histories
- The Formation and Fragmentation of Disks around Primordial Protostars
- The morphology of HII regions during reionization
- Multi-Element Abundance Measurements from Medium-Resolution Spectra. III. Metallicity Distributions of Milky Way Dwarf Satellite Galaxies
- Fragmentation of star-forming clouds enriched with the first dust
- Discovery of HE 1523-0901, a Strongly r-Process Enhanced Metal-Poor Star with Detected Uranium
- The First Galaxies: Assembly, Cooling and the Onset of Turbulence
- HE 0557-4840 - Ultra-Metal-Poor and Carbon-Rich
- The NIR Ca II triplet at low metallicity - Searching for extremely low-metallicity stars in classical dwarf galaxies
- NLTE abundances of Mn in a sample of metal-poor stars
- Probing the Formation of the First Low-Mass Stars with Stellar Archaeology
- The Chemical Evolution of the Draco Dwarf Spheroidal Galaxy
- The stellar content of the Hamburg/ESO survey. IV. Selection of candidate metal-poor stars
- Bright Metal-Poor Stars from the Hamburg/ESO Survey. I. Selection and Follow-up Observations from 329 Fields
- The Highly Unusual Chemical Composition of the Hercules Dwarf Spheroidal Galaxy
- Improved Laboratory Transition Probabilities for Neutral Chromium and Re-determination of the Chromium Abundance for the Sun and Three Stars
- Extremely metal-poor stars in classical dwarf spheroidal galaxies: Fornax, Sculptor and Sextans
- New Extremely Metal-Poor Stars in the Galactic Halo
- Stellar Archaeology -- Exploring the Universe with Metal-Poor Stars
- Metallicity and Alpha-Element Abundance Measurement in Red Giant Stars from Medium Resolution Spectra
- Carbon-Enhanced Metal-Poor Stars in the Inner and Outer Halo Components of the Milky Way
- Carbon-Enhanced Metal-Poor Stars. III. Main-Sequence Turn-Off Stars from the SDSS/SEGUE Sample
- How Common are the Magellanic Clouds?
- The Chemical Abundances of Stars in the Halo (CASH) Project. II. A Sample of 16 Extremely Metal-poor Stars
- An Extremely Carbon-rich, Extremely Metal-poor Star in the Segue 1 System
- The minimum stellar metallicity observable in the Galaxy
- The Effects of Patchy Reionization on Satellite Galaxies of the Milky Way
- The stellar content of the Hamburg/ESO survey VI. The metallicity distribution of main-sequence turnoff stars in the Galactic halo
- Suppression of accretion onto low-mass Population III stars