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The early Universe presented a star formation environment that was almost devoid of heavy elements. The lowest metallicity stars thus provide a unique window into the earliest Galactic stages, but are exceedingly rare and difficult to find.…

The first metal enrichment in the universe was made by supernova (SN) explosions of population (Pop) III stars. The trace remains in abundance patterns of extremely metal-poor (EMP) stars. We investigate the properties of nucleosynthesis in…

Astrophysics · Physics 2009-11-13 Nozomu Tominaga , Hideyuki Umeda , Keiichi Maeda , Ken'ichi Nomoto , Nobuyuki Iwamoto

Models of star formation in the early universe depend on the details of accretion, fragmentation and radiative feedback. Different simulations predict different initial mass functions of the first stars, ranging from predominantly low mass…

Solar and Stellar Astrophysics · Physics 2016-12-21 Thomas Nordlander , Anish M. Amarsi , Karin Lind , Martin Asplund , Paul S. Barklem , Andy R. Casey , Remo Collet , Jorrit Leenaarts

The evolution and explosion of metal-free stars with masses 10--100 solar masses are followed, and their nucleosynthetic yields, light curves, and remnant masses determined. When the supernova yields are integrated over a Salpeter initial…

Astrophysics · Physics 2011-02-11 Alexander Heger , S. E. Woosley

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…

Astrophysics of Galaxies · Physics 2015-05-30 Anna Frebel

We report on the first high-resolution spectroscopic analysis of HE0020-1741, a bright (V=12.9), ultra metal-poor ([Fe/H] = -4.1), carbon-enhanced ([C/Fe] = +1.7) star selected from the Hamburg/ESO Survey. This star exhibits low abundances…

The abundance patterns of extremely metal-poor (EMP) stars provide us with important information on nucleosynthesis in supernovae (SNe) formed in a Pop III or EMP environment, and thus on the nature of the first stars in the Universe. We…

Astrophysics · Physics 2009-11-11 Ken'ichi Nomoto , Nozomu Tominaga , Hideyuki Umeda , Chiaki Kobayashi

Context: The small- to intermediate-mass ($M <0.8 M_\odot$), most metal-poor stars that formed in the infancy of the Universe are still shining today in the sky. They are very rare, but their discovery and investigation brings new knowledge…

Astrophysics of Galaxies · Physics 2024-11-21 E. Caffau , P. Bonifacio , L. Monaco , M. Steffen , L. Sbordone , M. Spite , P. François , A J Gallagher , H. -G. Ludwig , P. Molaro

We report determinations of the molybdenum abundances in five mildly to extremely metal-poor turnoff stars using five Mo II lines near 2000A. In two of the stars, the abundance of molybdenum is found to be extremely enhanced, as high or…

Solar and Stellar Astrophysics · Physics 2011-11-10 Ruth C. Peterson

The study of the long-dead early generations of massive stars is crucial in order to obtain a complete picture of the chemical evolution of the Universe, hence the origin of the elements. The nature of these stars can be inferred indirectly…

Solar and Stellar Astrophysics · Physics 2019-01-31 Arthur Choplin

The first (Pop III) stars formed only out of H and He and were likely more massive than present-day stars. Massive Pop III stars in the range 140-260 M$_\odot$ are predicted to end their lives as pair-instability supernovae (PISNe),…

Solar and Stellar Astrophysics · Physics 2024-05-07 Ása Skúladóttir , Ioanna Koutsouridou , Irene Vanni , Anish M. Amarsi , Romain Lucchesi , Stefania Salvadori , David Aguado

The two known ``hyper-metal-poor'' (HMP) stars, HE0107-5240 and HE1327-2326, have extremely high enhancements of the light elements C, N, and O relative to Fe and appear to represent a statistically significant excess population relative to…

Astrophysics · Physics 2011-02-11 Jason Tumlinson

We present an analysis of high-resolution Keck/HIRES spectroscopic observations of J0815+4729, an extremely carbon-enhanced, iron-poor dwarf star. These high-quality data allow us to derive a metallicity of [Fe/H]$=-5.49{\pm}0.14$ from the…

Solar and Stellar Astrophysics · Physics 2020-04-22 Jonay I. González Hernández , David S. Aguado , Carlos Allende Prieto , Adam J. Burgasser , Rafael Rebolo

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…

Solar and Stellar Astrophysics · Physics 2015-06-17 Nozomu Tominaga , Nobuyuki Iwamoto , Ken'ichi Nomoto

We present adaptive-optics assisted near-infrared high-spectral resolution observations of late-type giants in the nuclear star cluster of the Milky Way. The metallicity and elemental abundance measurements of these stars offer us an…

Astrophysics of Galaxies · Physics 2018-03-14 Tuan Do , Wolfgang Kerzendorf , Quinn Konopacky , Joseph M. Marcinik , Andrea Ghez , Jessica R. Lu , Mark R. Morris

We present the discovery of 2MASS J05241392-0336543 (hereafter J0524-0336), a very metal-poor ([Fe/H]=-2.43 +- 0.16), highly r-process-enhanced ([Eu/Fe]= +1.34 +- 0.10) Milky Way halo field red giant star, with an ultra high Li abundance of…

Neutron-star mergers were recently confirmed as sites of rapid-neutron-capture (r-process) nucleosynthesis. However, in Galactic chemical evolution models, neutron-star mergers alone cannot reproduce the observed element abundance patterns…

Using high-resolution optical spectroscopy we determine the chemical abundance of the secondary star in the binary millisecond pulsar PSR J1023+0038. We measure a metallicity of [Fe/H] = 0.48 +/- 0.04 which is higher than the Solar value…

High Energy Astrophysical Phenomena · Physics 2022-03-09 T. Shahbaz , J. I. Gonzalez-Hernandez , R. P. Breton , M. R. Kennedy , D. Mata Sanchez , M. Linares

The chemical composition of stars with extremely low metal contents (taking ``metals'' to mean all elements other than hydrogen and helium) provides us with information on the masses of the stars that produced the first metals. Such a…

Astrophysics · Physics 2015-06-24 Piercarlo Bonifacio , Marco Limongi , Alessandro Chieffi

We propose the Wind of Fast Rotating Massive Stars scenario to explain the origin of the abundance anomalies observed in globular clusters. We compute and present models of fast rotating stars with initial masses between 20 and 120 Msun for…

Astrophysics · Physics 2009-10-12 T. Decressin , G. Meynet , C. Charbonnel , N. Prantzos , S. Ekström