Mining the Galactic Halo for Very Metal-Poor Stars
arXiv:0908.4279 · doi:10.1111/j.1745-3933.2009.00772.x
Abstract
We study the age and metallicity distribution function (MDF) of metal-poor stars in the Milky Way halo as a function of galactocentric radius by combining N-body simulations and semi-analytical methods. We find that the oldest stars populate the innermost region, while extremely metal-poor stars are more concentrated within r < 60 kpc. The MDF of [Fe/H] < -2 stars varies only very weakly within the central 50 kpc, while the relative contribution of [Fe/H] < -2 stars strongly increases with r, varying from 16% within 7 kpc < r < 20 kpc up to > 40% for r > 20 kpc. This is due to the faster descent of the spatial distribution (as seen from Earth) of the more enriched population. This implies that the outer halo < 40 kpc is the best region to search for very metal-poor stars. Beyond ~ 60 kpc the density of [Fe/H] < -2 stars is maximum within dwarf galaxies. All these features are imprinted by a combination of (i) the virialization epoch of the star-forming haloes, and (ii) the metal enrichment history of the Milky Way environment.
published in MNRAS letter
References in corpus (6)
- Two Stellar Components in the Halo of the Milky Way
- Fragmentation of star-forming clouds enriched with the first dust
- The Galaxy and its stellar halo: insights on their formation from a hybrid cosmological approach
- Ultra faint dwarfs: probing early cosmic star formation
- Life and times of dwarf spheroidal galaxies
- The Spatial Distribution of the Galactic First Stars I: High-Resolution N-body Approach
Cited by in corpus (58)
- Structure and Kinematics of the Stellar Halos and Thick Disks of the Milky Way Based on Calibration Stars from SDSS DR7
- J-PLUS: The Javalambre Photometric Local Universe Survey
- Where are the most ancient stars in the Milky Way?
- Extremely metal-poor stars from the cosmic dawn in the bulge of the Milky Way
- Constraining the primordial initial mass function with stellar archaeology
- The EMBLA Survey -- Metal-poor stars in the Galactic bulge
- Decoding the stellar fossils of the dusty Milky Way progenitors
- The Pristine survey X: a large population of low-metallicity stars permeates the Galactic disk
- The oldest and most metal poor stars in the APOSTLE Local Group simulations
- Predicting the locations of possible long-lived low-mass first stars: Importance of satellite dwarf galaxies
- Exploring the origin of low-metallicity stars in Milky Way-like galaxies with the NIHAO-UHD simulations
- Probing the existence of very massive first stars
- J-PLUS: Identification of low-metallicity stars with artificial neural networks using SPHINX
- Public Release of A-SLOTH: Ancient Stars and Local Observables by Tracing Halos
- On the formation of very metal-poor stars: The case of SDSS J1029151+172927
- Ultra-faint dwarf galaxies: unveiling the minimum mass of the first stars
- Following the Cosmic Evolution of Pristine Gas II: The search for Pop III-Bright Galaxies
- Evidence for Gyr timescales of neutron star mergers from Galactic archaeology
- Following The Cosmic Evolution Of Pristine Gas I: Implications For Milky Way Halo Stars
- The COMBS Survey -- II. Distinguishing the Metal-Poor Bulge from the Halo Interlopers
- The stellar content of the Hamburg/ESO survey VI. The metallicity distribution of main-sequence turnoff stars in the Galactic halo
- Galaxy formation with radiative and chemical feedback
- The history of the dark and luminous side of Milky Way-like progenitors
- The COMBS survey I: Chemical Origins of Metal-Poor Stars in the Galactic Bulge
- Following the Cosmic Evolution of Pristine Gas III: The Observational Consequences of the Unknown Properties of Population III Stars
- Low-metallicity star formation: Relative impact of metals and magnetic fields
- Implications of inhomogeneous metal mixing for stellar archaeology
- The Pristine Inner Galaxy Survey (PIGS) V: a chemo-dynamical investigation of the early assembly of the Milky Way with the most metal-poor stars in the bulge
- Suppression of accretion onto low-mass Population III stars
- Formation of carbon-enhanced metal-poor stars in the presence of far ultraviolet radiation
- Probing the initial mass function of the first stars with transients
- The stellar populations of high-redshift dwarf galaxies
- The energy distribution of the first supernovae
- Using the Multi-Object Adaptive Optics demonstrator RAVEN to observe metal-poor stars in and towards the Galactic Centre
- Seeding the second star -- II. CEMP star formation enriched from faint supernovae
- The Most Metal-poor Stars in the Inner Bulge
- Ancient Very Metal-Poor Stars Associated With the Galactic Disk in the H3 Survey
- The chemical connection between damped Lyman-α systems and Local Group dwarf galaxies
- PISN-explorer: hunting the descendants of very massive first stars
- The Metallicity Gradient and Complex Formation History of the Outermost Halo of the Milky Way
- Origin of metals in old Milky Way halo stars based on GALAH and Gaia
- The stochastic enrichment of Population II stars
- Metal Pollution of Low-Mass Population III Stars through Accretion of Interstellar Objects like `Oumuamua
- On the dearth of C-enhanced metal-poor stars in the Galactic bulge
- On the likelihoods of finding very metal-poor (and old) stars in the Milky Way's disc, bulge, and halo
- High redshift Lya emitters: clues on the Milky Way infancy
- Modeling the survival of Population III stars till present day
- Where are the extremely metal-poor stars in the Milky Way and Andromeda? Expectations from TNG50
- Evolution of Rotating 25 M Population III star: Physical Properties and Resulting Supernovae
- Gravitational Wave Sources from Pop III Stars are Preferentially Located within the Cores of their Host Galaxies
- CEMPlifying reionization
- Linking high-z and low-z: Are We Observing the Progenitors of the Milky Way with JWST?
- New SiS destruction and formation routes via neutral-neutral reactions and their fundamental role in interstellar clouds at low and high metallicity values
- Tomography of stellar halos: what does anisotropy in a stellar halo tell us?
- Studying The Effect of Radiation Pressure on Evolution of a Population III Stellar Cluster
- Detailed Abundance Determination of Metal-Poor Stars with X-Shooter I. Unusual Chemistry in Halo Stars
- The COMBS Survey -- III. The Chemodynamical Origins of Metal-Poor Bulge Stars
- White dwarfs in the building blocks of the Galactic spheroid