We report an abundance analysis for the highly r-process-enhanced (r-II) star CS 29497-004, a very metal-poor giant with solar system Teff = 5013 K and [Fe/H] = −2.85, whose nature was initially discovered in the course of the HERES project. Our analysis is based on high signal-to-noise ratio, high-resolution (R ~ 75 000) VLT/UVES spectra and MARCS model atmospheres under the assumption of local thermodynamic equilibrium, and obtains abundance measurements for a total of 46 elements, 31 of which are neutron-capture elements. As is the case for the other ~25 r-II stars currently known, the heavy-element abundance pattern of CS 29497-004 well-matches a scaled solar system second peak r-process-element abundance pattern. We confirm our previou...
First results are reported of a new abundance study of neutron-capture elements in the ultra-metal-p...
Context. Moderately r-process-enriched stars (r-I; +0.3 ≤ [Eu/Fe] ≤ +1.0) are at least four times...
We present detailed chemical abundances of three new bright (V ∼ 11), extremely metal-poor ([Fe/H] ∼...
We report on a dedicated effort to identify and study metal-poor stars strongly enhanced in r-proces...
Context. Studies of the r-process enhanced stars are important for understanding the natur...
We report on a detailed abundance analysis of two strongly r-process enhanced, very metal-poor stars...
We report on a dedicated effort to identify and study metal-poor stars strongly enhanced in r-proces...
We present a high-resolution ( R= 75 000, S/ N ) spectroscopic analysis of the bright ( V= 11.7), ex...
Context. The origin and site(s) of the r-process nucleosynthesis is(are) still not known with certai...
High-resolution spectra obtained with three ground-based facilities and the Bubble Space Telescope (...
We have derived abundances of 33 elements and upper limits for 6 additional elements for the metal-p...
International audienceWe have derived abundances of 33 elements and upper limits for 6 additional el...
20 pages, 21 figures, 3 tables.International audienceDetailed abundances of the elements produced by...
We present the results of analysis of ``snapshot'' spectra of 253 metal-poor halo stars -3.8 < [Fe/H...
We present age estimates for the newly discovered, very r-process-enhanced metal-poor star HE 1523-0...
First results are reported of a new abundance study of neutron-capture elements in the ultra-metal-p...
Context. Moderately r-process-enriched stars (r-I; +0.3 ≤ [Eu/Fe] ≤ +1.0) are at least four times...
We present detailed chemical abundances of three new bright (V ∼ 11), extremely metal-poor ([Fe/H] ∼...
We report on a dedicated effort to identify and study metal-poor stars strongly enhanced in r-proces...
Context. Studies of the r-process enhanced stars are important for understanding the natur...
We report on a detailed abundance analysis of two strongly r-process enhanced, very metal-poor stars...
We report on a dedicated effort to identify and study metal-poor stars strongly enhanced in r-proces...
We present a high-resolution ( R= 75 000, S/ N ) spectroscopic analysis of the bright ( V= 11.7), ex...
Context. The origin and site(s) of the r-process nucleosynthesis is(are) still not known with certai...
High-resolution spectra obtained with three ground-based facilities and the Bubble Space Telescope (...
We have derived abundances of 33 elements and upper limits for 6 additional elements for the metal-p...
International audienceWe have derived abundances of 33 elements and upper limits for 6 additional el...
20 pages, 21 figures, 3 tables.International audienceDetailed abundances of the elements produced by...
We present the results of analysis of ``snapshot'' spectra of 253 metal-poor halo stars -3.8 < [Fe/H...
We present age estimates for the newly discovered, very r-process-enhanced metal-poor star HE 1523-0...
First results are reported of a new abundance study of neutron-capture elements in the ultra-metal-p...
Context. Moderately r-process-enriched stars (r-I; +0.3 ≤ [Eu/Fe] ≤ +1.0) are at least four times...
We present detailed chemical abundances of three new bright (V ∼ 11), extremely metal-poor ([Fe/H] ∼...