International audienceWe have derived abundances of 33 elements and upper limits for 6 additional elements for the metal-poor ([Fe/H] = -2.42) turn-off star HE 0338-3945 from high-quality VLT-UVES spectra. The star is heavily enriched, by about a factor of 100 relative to iron and the Sun, in the heavy s-elements (Ba, La, ...). It is also heavily enriched in Eu, which is generally considered an r-element, and in other similar elements. It is less enriched, by about a factor of 10, in the lighter s-elements (Sr, Y and Zr). C is also strongly enhanced and, to a somewhat lesser degree, N and O. These abundance estimates are subject to severe uncertainties due to NLTE and thermal inhomogeneities which are not taken into detailed consideration. ...
We present age estimates for the newly discovered, very r-process-enhanced metal-poor star HE 1523-0...
We use a large set of high S/N, high resolution spectra of 19 stars with -2.8 <[Fe/H]< 0 to study th...
© 2020. The American Astronomical Society. All rights reserved. We report the discovery of J1521-353...
International audienceWe have derived abundances of 33 elements and upper limits for 6 additional el...
We have derived abundances of 33 elements and upper limits for 6 additional elements for the metal-p...
We have derived abundances of 33 elements and upper limits for 6 additional elements for the metal-p...
We report on a dedicated effort to identify and study metal-poor stars strongly enhanced in r-proces...
Aims. The aim of this study is a detailed abundance analysis of the newly discovered r-rich star HE ...
Context. Moderately r-process-enriched stars (r-I; +0.3 ≤ [Eu/Fe] ≤ +1.0) are at least four times as...
Context. Moderately r-process-enriched stars (r-I; +0.3 ≤ [Eu/Fe] ≤ +1.0) are at least four times...
To better characterize the abundance patterns produced by the r-process, we have derived new abundan...
Context. The origin and site(s) of the r-process nucleosynthesis is(are) still not known with certai...
We report on a dedicated effort to identify and study metal-poor stars strongly enhanced in r-proces...
International audienceWe report on a dedicated effort to identify and study metal-poor stars strongl...
We present age estimates for the newly discovered, very r-process-enhanced metal-poor star HE 1523-0...
We use a large set of high S/N, high resolution spectra of 19 stars with -2.8 <[Fe/H]< 0 to study th...
© 2020. The American Astronomical Society. All rights reserved. We report the discovery of J1521-353...
International audienceWe have derived abundances of 33 elements and upper limits for 6 additional el...
We have derived abundances of 33 elements and upper limits for 6 additional elements for the metal-p...
We have derived abundances of 33 elements and upper limits for 6 additional elements for the metal-p...
We report on a dedicated effort to identify and study metal-poor stars strongly enhanced in r-proces...
Aims. The aim of this study is a detailed abundance analysis of the newly discovered r-rich star HE ...
Context. Moderately r-process-enriched stars (r-I; +0.3 ≤ [Eu/Fe] ≤ +1.0) are at least four times as...
Context. Moderately r-process-enriched stars (r-I; +0.3 ≤ [Eu/Fe] ≤ +1.0) are at least four times...
To better characterize the abundance patterns produced by the r-process, we have derived new abundan...
Context. The origin and site(s) of the r-process nucleosynthesis is(are) still not known with certai...
We report on a dedicated effort to identify and study metal-poor stars strongly enhanced in r-proces...
International audienceWe report on a dedicated effort to identify and study metal-poor stars strongl...
We present age estimates for the newly discovered, very r-process-enhanced metal-poor star HE 1523-0...
We use a large set of high S/N, high resolution spectra of 19 stars with -2.8 <[Fe/H]< 0 to study th...
© 2020. The American Astronomical Society. All rights reserved. We report the discovery of J1521-353...