Extremely metal-poor stars from the cosmic dawn in the bulge of the Milky Way
arXiv:1511.03930 · doi:10.1038/nature15747
Abstract
The first stars are predicted to have formed within 200 million years after the Big Bang, initiating the cosmic dawn. A true first star has not yet been discovered, although stars with tiny amounts of elements heavier than helium ('metals') have been found in the outer regions ('halo') of the Milky Way. The first stars and their immediate successors should, however, preferentially be found today in the central regions ('bulges') of galaxies, because they formed in the largest over-densities that grew gravitationally with time. The Milky Way bulge underwent a rapid chemical enrichment during the first 1-2 billion years, leading to a dearth of early, metal-poor stars. Here we report observations of extremely metal-poor stars in the Milky Way bulge, including one star with an iron abundance about 10,000 times lower than the solar value without noticeable carbon enhancement. We confirm that the most metal-poor bulge stars are on tight orbits around the Galactic Centre, rather than being halo stars passing through the bulge, as expected for stars formed at redshifts greater than 15. Their chemical compositions are in general similar to typical halo stars of the same metallicity although intriguing differences exist, including lower abundances of carbon.
Published in Nature on 11/11/15, see http://dx.doi.org/10.1038/nature15747
References in corpus (13)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- galpy: A Python Library for Galactic Dynamics
- An extremely primitive halo star
- Carbon-Enhanced Metal-Poor Star Frequencies in the Galaxy: Corrections for the Effect of Evolutionary Status on Carbon Abundances
- Probing the Formation of the First Low-Mass Stars with Stellar Archaeology
- The Frequency of Carbon-Enhanced Metal-Poor Stars in the Galaxy from the HERES sample
- Accurate fundamental parameters for Lower Main Sequence Stars
- High-Resolution Spectroscopic Study of Extremely Metal-Poor Star Candidates from the SkyMapper Survey
- The Best and Brightest Metal-Poor Stars
- The Gaia-ESO Survey: the most metal-poor stars in the Galactic bulge
- Carbon-Enhanced Metal-Poor Stars, the Cosmic Microwave Background, and the Stellar IMF in the Early Universe
- Non-LTE Balmer line formation in late-type spectra: Effects of atomic processes involving hydrogen atoms
- The origin of low [alpha/Fe] ratios in extremely metal-poor stars
Cited by in corpus (88)
- SkyMapper Southern Survey: First Data Release (DR1)
- The Pristine survey I: Mining the Galaxy for the most metal-poor stars
- Chemical evolution of the Galactic bulge as traced by microlensed dwarf and subgiant stars. VI. Age and abundance structure of the stellar populations in the central sub-kpc of the Milky Way
- Complete element abundances of nine stars in the r-process galaxy Reticulum II
- Where are the most ancient stars in the Milky Way?
- JINAbase: A database for chemical abundances of metal-poor stars
- The Initial mass function of the first stars inferred from extremely metal-poor stars
- The origin of the diverse morphologies and kinematics of Milky Way-mass galaxies in the FIRE-2 simulations
- Interstellar Extinction Curve Variations Toward the Inner Milky Way: A Challenge to Observational Cosmology
- Abundance scaling in stars, nebulae and galaxies
- PUSHing Core-Collapse Supernovae to Explosions in Spherical Symmetry III: Nucleosynthesis Yields
- The EMBLA Survey -- Metal-poor stars in the Galactic bulge
- Before the Bar: Kinematic Detection of A Spheroidal Metal-Poor Bulge Component
- The oldest and most metal poor stars in the APOSTLE Local Group simulations
- 3D NLTE analysis of the most iron-deficient star, SMSS0313-6708
- Kinematics of Highly R-Process-Enhanced Field Stars: Evidence for an Accretion Origin and Detection of Several Groups from Disrupted Satellites
- The Pristine Survey IV: Approaching the Galactic metallicity floor with the discovery of an ultra metal-poor star
- APOGEE DR14/DR15 Abundances in the Inner Milky Way
- APOGEE Kinematics I: Overview of the Kinematics of the Galactic Bulge as Mapped by APOGEE
- The SkyMapper DR1.1 Search for Extremely Metal-Poor Stars
- From actinides to zinc: Using the full abundance pattern of the brightest star in Reticulum II to distinguish between different r-process sites
- The Pristine survey III: Spectroscopic confirmation of an efficient search for extremely metal-poor stars
- The lanthanide fraction distribution in metal-poor stars: a test of neutron star mergers as the dominant r-process site
- The Bulge Radial Velocity Assay for RR Lyrae stars (BRAVA-RR) DR2: a Bimodal Bulge?
- The Pristine Inner Galaxy Survey (PIGS) II: Uncovering the most metal-poor populations in the inner Milky Way
- The R-Process Alliance: Chemo-Dynamically Tagged Groups of Halo -Process-Enhanced Stars Reveal a Shared Chemical-Evolution History
- Chemical Abundance Signature of J0023+0307 -- A Second-Generation Main-Sequence Star with [Fe/H]<-6
- Ultrahigh Energy Cosmic Rays and Black Hole Mergers
- Following the Cosmic Evolution of Pristine Gas II: The search for Pop III-Bright Galaxies
- Milky Way Tomography with the SkyMapper Southern Survey. II. Photometric Re-calibration of SMSS DR2
- 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
- Stellar Metallicities from SkyMapper Photometry II: Precise photometric metallicities of 280,000 giant stars with [Fe/H] in the Milky Way
- On the inconsistency of [C/Fe] abundances and the fractions of carbon-enhanced metal-poor stars among various stellar surveys
- The Pristine survey -- XII: Gemini-GRACES chemo-dynamical study of newly discovered extremely metal-poor stars in the Galaxy
- High-resolution abundance analysis of red giants in the metal-poor bulge globular cluster HP~1
- High resolution spectroscopic follow-up of the most metal-poor candidates from SkyMapper DR1.1
- The COMBS survey I: Chemical Origins of Metal-Poor Stars in the Galactic Bulge
- The Pristine Inner Galaxy Survey (PIGS) III: carbon-enhanced metal-poor stars in the bulge
- Iron-peak elements Sc, V, Mn, Cu and Zn in Galactic bulge globular clusters
- 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
- The SkyMapper Transient Survey
- Exploring the Chemical Composition and Double Horizontal Branch of the Bulge Globular Cluster NGC 6569
- Oxygen and zinc abundances in 417 Galactic bulge red giants
- The R-Process Alliance: Chemo-Dynamically Tagged Groups II. An Extended Sample of Halo -Process-Enhanced Stars
- Detailed abundance analysis of a metal-poor giant in the Galactic Center
- Carbon-Enhanced Metal-Poor star candidates from BP/RP Spectra in DR3
- The Metal-Poor Metallicity Distribution of the Ancient Milky Way
- Using the Multi-Object Adaptive Optics demonstrator RAVEN to observe metal-poor stars in and towards the Galactic Centre
- Chemical enrichment of stars due to accretion from ISM during the Galaxy's assembly
- Toward extremely metal poor stars
- Enrichment by Extragalactic First Stars in the Large Magellanic Cloud
- Chemical abundances in a high velocity RR Lyrae star near the bulge
- HERBS I: Metallicity and alpha enhancement along the Galactic bulge minor axis
- The Most Metal-poor Stars in the Inner Bulge
- Decoding the compositions of four bright -process-enhanced stars
- Fates of the oldest intermediate-mass stars - Primordial to Extremely Metal-Poor AGB and Super-AGB Stars: White Dwarf or Supernova progenitors
- Modeling the chemical enrichment history of the Bulge Fossil Fragment Terzan 5
- Keck HIRES Spectroscopy of SkyMapper Commissioning Survey Candidate Extremely Metal-Poor Stars
- Discovery of 18 stars with -3.10 < [Fe/H] < -1.45 in the Sagittarius dwarf galaxy
- HERBS II: Detailed chemical compositions of Galactic bulge stars
- The Pristine Inner Galaxy Survey (PIGS) VII: a discovery of the first inner Galaxy CEMP-r/s star
- On the likelihoods of finding very metal-poor (and old) stars in the Milky Way's disc, bulge, and halo
- On the dearth of C-enhanced metal-poor stars in the Galactic bulge
- Finding -II sibling stars in the Milky Way with the Greedy Optimistic Clustering algorithm
- Searching for a kinematic signature of the moderately metal-poor stars in the Milky Way bulge using N-body simulations
- The Occurrence and Impact of Carbon-Oxygen Shell Mergers in Massive Stars
- The Pristine Inner Galaxy Survey (PIGS) X. Probing the early chemical evolution of the Sagittarius dwarf galaxy with carbon abundances
- Formation of First Galaxies inside Density Peaks and Voids under the Influence of Dark Matter-Baryon Streaming Velocity, I: Initial Condition and Simulation Scheme
- Impact of distance determinations on Galactic structure. II. Old tracers
- Four Metal-poor Stars in the Sagittarius Dwarf Spheroidal Galaxy
- The Pristine survey -- XX: GTC follow-up observations of extremely metal-poor stars identified from Pristine and LAMOST
- The S-PLUS Ultra-Short Survey: first data release
- Where are the extremely metal-poor stars in the Milky Way and Andromeda? Expectations from TNG50
- Radial velocities of RR Lyrae stars in and around NGC 6441
- Revised surface abundances of R Coronae Borealis stars
- Measuring the alpha-abundance of subsolar-metallicity stars in the Milky Way's central half-parsec: testing globular cluster and dwarf galaxy infall scenarios
- Reassessing Dust's Role in Forming the CMB
- A Pop III generated dust screen at z~16
- A second-generation star in a relic dwarf galaxy
- Capivara: A Spectral-based Segmentation Method for IFU Data Cubes
- On the Chemical Composition of the Evolved Very Bright Metal-Poor Star HD 1936
- The COMBS Survey -- III. The Chemodynamical Origins of Metal-Poor Bulge Stars
- Detailed Abundance Determination of Metal-Poor Stars with X-Shooter I. Unusual Chemistry in Halo Stars
- White dwarfs in the building blocks of the Galactic spheroid
- First Life in the Universe
- Galaxies as fluctuations in cosmic stellar liquid
- An ancient system hidden in the Galactic plane?