An extremely primitive halo star
arXiv:1203.2612 · doi:10.1038/nature10377
Abstract
The early Universe had a chemical composition consisting of hydrogen, helium and traces of lithium1, almost all other elements were created in stars and supernovae. The mass fraction, Z, of elements more massive than helium, is called "metallicity". A number of very metal poor stars have been found some of which, while having a low iron abundance, are rich in carbon, nitrogen and oxygen. For theoretical reasons and because of an observed absence of stars with metallicities lower than Z=1.5E-5, it has been suggested that low mass stars (M<0.8M\odot, the ones that survive to the present day) cannot form until the interstellar medium has been enriched above a critical value, estimated to lie in the range 1.5E-8\leqZ\leq1.5E-6, although competing theories claiming the contrary do exist. Here we report the chemical composition of a star with a very low Z\leq6.9E-7 (4.5E-5 of that of the Sun) and a chemical pattern typical of classical extremely metal poor stars, meaning without the enrichment of carbon, nitrogen and oxygen. This shows that low mass stars can be formed at very low metallicity. Lithium is not detected, suggesting a low metallicity extension of the previously observed trend in lithium depletion. Lithium depletion implies that the stellar material must have experienced temperatures above two million K in its history, which points to rather particular formation condition or internal mixing process, for low Z stars.
Published on Nature, 2011 Volume 477, Issue 7362, pp. 67-69
References in corpus (10)
- Primordial Nucleosynthesis: from precision cosmology to fundamental physics
- First Stars VIII -- Enrichment of the neutron-capture elements in the early Galaxy
- HE 0557-4840 - Ultra-Metal-Poor and Carbon-Rich
- First stars VII. Lithium in extremely metal poor dwarfs
- Probing the Formation of the First Low-Mass Stars with Stellar Archaeology
- HE 1327-2326, an unevolved star with [Fe/H]<-5.0. II. New 3D-1D corrected abundances from a VLT/UVES spectrum
- First Stars XI. Chemical composition of the extremely metal-poor dwarfs in the binary CS 22876--032
- Extremely metal-poor stars from the SDSS
- Beryllium in Ultra-Lithium-Deficient Halo Stars - The Blue Straggler Connection
- The CIFIST 3D model atmosphere grid
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- Evolution of the First Supernovae in Protogalaxies: Dynamics of Mixing of Heavy Elements
- What have we learned from observational cosmology ?