Abundance Profiling of Extremely Metal-Poor Stars and Supernova Properties in the Early Universe
arXiv:1309.6734 · doi:10.1088/0004-637X/785/2/98
Abstract
After the Big Bang nucleosynthesis, the first heavy element enrichment in the Universe was made by a supernova (SN) explosion of a population (Pop) III star (Pop III SN). The abundance ratios of elements produced from Pop III SNe are recorded in abundance patterns of extremely metal-poor (EMP) stars. The observations of the increasing number of EMP stars have made it possible to statistically constrain the explosion properties of Pop III SNe. We present Pop III SN models whose nucleosynthesis yields well-reproduce individually the abundance patterns of 48 such metal-poor stars as [Fe/H] $\mathrel{\rlap{\lower 4pt \hbox{$\sim$}}\raise 1pt \hbox {$<$}}-3.5$. We then derive relations between the abundance ratios of EMP stars and certain explosion properties of Pop III SNe: the higher [(C+N)/Fe] and [(C+N)/Mg] ratios correspond to the smaller ejected Fe mass and the larger compact remnant mass, respectively. Using these relations, the distributions of the abundance ratios of EMP stars are converted to those of the explosion properties of Pop III SNe. Such distributions are compared with those of the explosion properties of present day SNe: The distribution of the ejected Fe mass of Pop III SNe has the same peak as that of the resent day SNe but shows an extended tail down to , and the distribution of the mass of the compact remnant of Pop III SNe is as wide as that of the present day stellar-mass black holes. Our results demonstrate the importance of large samples of EMP stars obtained by ongoing and future EMP star surveys and subsequent high-dispersion spectroscopic observations in clarifying the nature of Pop III SNe in the early Universe.
26 pages, 12 figures. Accepted for publication in the Astrophysical Journal
References in corpus (29)
- Shapiro delay measurement of a two solar mass neutron star
- Nucleosynthetic signatures of the first stars
- No supernovae associated with two long-duration gamma ray bursts
- First stars VI - Abundances of C, N, O, Li, and mixing in extremely metal-poor giants. Galactic evolution of the light elements
- An extremely primitive halo star
- Fragmentation of star-forming clouds enriched with the first dust
- Asphericity in Supernova Explosions from Late-Time Spectroscopy
- HE 0557-4840 - Ultra-Metal-Poor and Carbon-Rich
- Effects of rotation on the evolution of primordial stars
- First stars VII. Lithium in extremely metal poor dwarfs
- NLTE abundances of Mn in a sample of metal-poor stars
- A non-LTE study of neutral and singly-ionized calcium in late-type stars
- The Highly Unusual Chemical Composition of the Hercules Dwarf Spheroidal Galaxy
- First stars IX -Mixing in extremely metal-poor giants. Variation of the 12C/13C, [Na/Mg] and [Al/Mg] ratios
- HE 1327-2326, an unevolved star with [Fe/H]<-5.0. II. New 3D-1D corrected abundances from a VLT/UVES spectrum
- Fallback Supernovae: A Possible Origin of Peculiar Supernovae with Extremely Low Explosion Energies
- NLTE determination of the aluminium abundance in a homogeneous sample of extremely metal-poor stars
- NLTE determination of the sodium abundance in a homogeneous sample of extremely metal-poor stars
- New Extremely Metal-Poor Stars in the Galactic Halo
- Carbon Stars in the Hamburg/ESO Survey: Abundances
- The Connection between Gamma-Ray Bursts and Extremely Metal-Poor Stars: Black Hole-forming Supernovae with Relativistic Jets
- Aspherical Properties of Hydrodynamics and Nucleosynthesis in Jet-induced Supernovae
- The chemical compositions of the extreme halo stars HE0107-5240 and HE1327-2326 inferred from 3D hydrodynamical model atmospheres
- Chemical Abundance Analysis of the Extremely Metal-Poor Star HE 1300+0157
- A New Type of Extremely Metal Poor Star
- First Stars XI. Chemical composition of the extremely metal-poor dwarfs in the binary CS 22876--032
- Light element abundances in carbon-enhanced metal-poor stars
- Near-Infrared Spectroscopy of Carbon-Enhanced Metal-Poor Stars. I. A SOAR/OSIRIS Pilot Study
- Nucleosynthesis in High-Entropy Hot-Bubbles of SNe and Abundance Patterns of Extremely Metal-Poor Stars
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- Near-Field Cosmology with Metal-Poor Stars
- Primordial Star Formation under the Influence of Far Ultraviolet Radiation: 1540 Cosmological Halos and the Stellar Mass Distribution
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- Observational Constraints on First-Star Nucleosynthesis. I. Evidence for Multiple Progenitors of CEMP-no Stars
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- An Elemental Assay of Very, Extremely, and Ultra Metal-Poor Stars
- The Initial mass function of the first stars inferred from extremely metal-poor stars
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- Descendants of the first stars: the distinct chemical signature of second generation stars
- Four-hundred Very Metal-Poor Stars Studied with LAMOST and Subaru. II. Elemental abundances
- The role of binaries in the enrichment of the early Galactic halo. II. Carbon-Enhanced Metal-Poor Stars - CEMP-no stars
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- Exploring the Origin of Lithium, Carbon, Strontium and Barium with four new Ultra Metal-Poor Stars
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- SD 1313-0019 -- Another second-generation star with [Fe/H] = -5.0, observed with the Magellan Telescope
- Metal-Poor Stars Observed with the Magellan Telescope. III. New Extremely and Ultra Metal-Poor Stars from SDSS/SEGUE and Insights on the Formation of Ultra Metal-Poor Stars
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- Binarity among CEMP-no stars: an indication of multiple formation pathways?
- Carbon-Enhanced Metal-Poor Stars: CEMP-s and CEMP-no Sub-Classes in the Halo System of the Milky Way
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- Galactic Archeology with the AEGIS Survey: The Evolution of Carbon and Iron in the Galactic Halo
- Stellar Yields of Rotating First Stars. I. Yields of Weak Supernovae and Abundances of Carbon-enhanced Hyper Metal Poor Stars
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- Observational Constraints on First-Star Nucleosynthesis. II. Spectroscopy of an Ultra Metal-Poor CEMP-no Star
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- Classification of extremely metal-poor stars: absent region in A(C)-[Fe/H] plane and the role of dust cooling
- The Mass Distribution of Population III Stars
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- The Populations of Carina. II. Chemical Enrichment
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- Detection of a population of carbon-enhanced metal-poor stars in the Sculptor dwarf spheroidal galaxy
- An Ultra Metal-poor Star Near the Hydrogen-burning Limit
- A Minimum Dilution Scenario for Supernovae and Consequences for Extremely Metal-Poor Stars
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- High-resolution spectroscopy of extremely metal-poor stars from SDSS/SEGUE. III. Unevolved Stars with
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- The Pristine survey -- XII: Gemini-GRACES chemo-dynamical study of newly discovered extremely metal-poor stars in the Galaxy
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- High resolution spectroscopic follow-up of the most metal-poor candidates from SkyMapper DR1.1
- Follow-up observations of extremely metal-poor stars identified from SDSS
- The R-Process Alliance: The Peculiar Chemical Abundance Pattern of RAVE J183013.5-455510
- Detection of Phosphorus, Sulphur, and Zinc in the Carbon-Enhanced Metal-Poor Star BD+44 493
- Metal-poor Stars Observed with the Automated Planet Finder Telescope. II. Chemodynamical Analysis of Six Low-Metallicity Stars in the Halo System of the Milky Way
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- The Pristine Inner Galaxy Survey (PIGS) III: carbon-enhanced metal-poor stars in the bulge
- Abundance anomalies in metal-poor stars from Population III supernova ejecta hydrodynamics
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- 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
- Chemical Cartography. II. The Assembly History of the Galactic Stellar Halo Traced by Carbon-Enhanced Metal-Poor Stars
- Chemo-Dynamically Tagged Groups of CEMP Stars in the Halo of the Milky Way. I. Untangling the Origins of CEMP- and CEMP-no Stars
- Lithium in CEMP-no stars: A new constraint on the lithium depletion mechanism in the early universe
- Carbon-Enhanced Metal-Poor star candidates from BP/RP Spectra in DR3
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- Carbon-enhanced Metal-poor Stars in SDSS/SEGUE. II. Comparison of CEMP Star Frequencies with Binary Population Synthesis Models
- Machine learning detects multiplicity of the first stars in stellar archaeology data
- Targeting Bright Metal-poor Stars in the Disk and Halo Systems of the Galaxy
- The energy distribution of the first supernovae
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- Are Faint Supernovae Responsible for Carbon-Enhanced Metal-Poor Stars?
- CEMP stars: possible hosts to carbon planets in the early universe
- On the 12C/13C isotopic ratio at the dawn of chemical evolution
- The Pristine survey XIV: chemical analysis of two ultra-metal-poor stars
- Raising the observed metallicity floor with a 3D non-LTE analysis of SDSS J102915.14+172927.9
- Fates of the oldest intermediate-mass stars - Primordial to Extremely Metal-Poor AGB and Super-AGB Stars: White Dwarf or Supernova progenitors
- Detection of Al II in the Ultraviolet Spectra of Metal-Poor Stars: An Empirical LTE Test of NLTE Aluminum Abundance Calculations
- Inferring the velocity of early massive stars from the abundances of extremely metal-poor stars
- The GALAH survey: a catalogue of carbon-enhanced stars and CEMP candidates
- Seven New Carbon-Enhanced Metal-Poor RR Lyrae Stars
- Can Population III stars be major origins of both merging binary black holes and extremely metal poor stars?
- Chemical composition of two bright extremely metal-poor stars from the SDSS MARVELS pre-survey
- Chemical analysis of very metal-poor turn-off stars from SDSS-DR12
- Predicting metallicities and carbon abundances from Gaia XP spectra for (carbon-enhanced) metal-poor stars
- A strong neutron burst in jet-like supernovae of spinstars
- Search for Extremely Metal-Poor Stars with GEMINI-N/GRACES I. Chemical-Abundance Analysis
- Chemical analysis of two extremely metal-poor stars HE 2148-2039 and HE 2155-2043
- Explaining the ratio in the Galactic halo: the contribution from shell mergers in primordial massive stars
- Spectroscopic study of four metal-poor carbon stars from the Hamburg/ESO Survey: On confirming the low-mass nature of their companions
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- Are the Formation and Abundances of Metal-Poor Stars the Result of Dust Dynamics?
- Metal-Poor Stars Observed with the Southern African Large Telescope II. An Extended Sample
- Where are the extremely metal-poor stars in the Milky Way and Andromeda? Expectations from TNG50
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- Multicolor light curves simulations of Population III core-collapse supernovae: from shock breakout to Co decay
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- A Carbon-enhanced Lyman Limit System: Signature of the First Generation of Stars?
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- Self-Organization In Stellar Evolution: Size-Complexity Rule
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- SDSSJ0018-0939: A Clear Signature of Sub-Chandrasekhar Mass Type 1a Supernova
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