detailed elemental abundance analysis has been carried out for the very metal-poor (Fe/H = -2.7)star BS 16934-002, which was identified in our previous work as a star exhibiting large overabundances of Mg and Sc. A comparison of the abundance pattern of this star with that of the well-studied metal-poor star HD 122563 indicates excesses of O, Na, Mg, Al, and Sc in BS 16934 002. Of particular interest, no excess of C or N is found in this object, in contrast to CS 22949-037 and CS 29498-043, two previously known carbon-rich, extremely metal-poor stars with excesses of the alpha-elements. No established nucleosynthesis model exists that explains the observed abundance pattern of BS 16934-002. A supernova model, including mixing and fallback a...
We present the results of a high resolution spectroscopic study of eight metal-poor stars previously...
We have obtained high-resolution spectra of the extremely metal-poor star CS 22949-037 ()[Fe/H]p 3.7...
Context. The chemical composition of extremely metal-poor stars (EMP stars; [Fe/H] < similar to -3) ...
A detailed elemental abundance analysis has been carried out for the very metal-poor ([Fe/H] = -2.7)...
A detailed elemental abundance analysis has been carried out for the very metal-poor ([Fe/H]=-2.7) s...
We report on the details of an abundance study using the Subaru Telescope High Dispersion Spectrogra...
We analyze a high-resolution, high signal-to-noise ratio spectrum of the carbon-rich, extremely meta...
We analyze a high-resolution, high signal-to-noise ratio spectrum of the carbon-rich, extremely meta...
Elemental abundance measurements have been obtained for a sample of 18 very metal-poor stars using s...
Elemental abundance measurements have been obtained for a sample of 18 very metal-poor stars using s...
CS 22949-037 is one of the most metal-poor giants known ([Fe/H]~-4.0),and it exhibits large overabun...
Original article can be found at: http://www.iop.org/EJ/journal/apj Copyright American Astronomical ...
This paper reports detailed abundance analyses for four extremelymetal-poor (XMP) giant stars with [...
International audienceContext. Unevolved metal-poor stars bore witness to the early evolution of the...
International audienceContext. Unevolved metal-poor stars bore witness to the early evolution of the...
We present the results of a high resolution spectroscopic study of eight metal-poor stars previously...
We have obtained high-resolution spectra of the extremely metal-poor star CS 22949-037 ()[Fe/H]p 3.7...
Context. The chemical composition of extremely metal-poor stars (EMP stars; [Fe/H] < similar to -3) ...
A detailed elemental abundance analysis has been carried out for the very metal-poor ([Fe/H] = -2.7)...
A detailed elemental abundance analysis has been carried out for the very metal-poor ([Fe/H]=-2.7) s...
We report on the details of an abundance study using the Subaru Telescope High Dispersion Spectrogra...
We analyze a high-resolution, high signal-to-noise ratio spectrum of the carbon-rich, extremely meta...
We analyze a high-resolution, high signal-to-noise ratio spectrum of the carbon-rich, extremely meta...
Elemental abundance measurements have been obtained for a sample of 18 very metal-poor stars using s...
Elemental abundance measurements have been obtained for a sample of 18 very metal-poor stars using s...
CS 22949-037 is one of the most metal-poor giants known ([Fe/H]~-4.0),and it exhibits large overabun...
Original article can be found at: http://www.iop.org/EJ/journal/apj Copyright American Astronomical ...
This paper reports detailed abundance analyses for four extremelymetal-poor (XMP) giant stars with [...
International audienceContext. Unevolved metal-poor stars bore witness to the early evolution of the...
International audienceContext. Unevolved metal-poor stars bore witness to the early evolution of the...
We present the results of a high resolution spectroscopic study of eight metal-poor stars previously...
We have obtained high-resolution spectra of the extremely metal-poor star CS 22949-037 ()[Fe/H]p 3.7...
Context. The chemical composition of extremely metal-poor stars (EMP stars; [Fe/H] < similar to -3) ...