International audienceAims. The Chemical Evolution of R-process Elements in Stars (CERES) project aims to provide a homogeneous analysis of a sample of metal-poor stars ([Fe/H]<-1.5). We present the stellar parameters and the chemical abundances of elements up to Zr for a sample of 52 giant stars.Methods. We relied on a sample of high signal-to-noise UVES spectra. We determined stellar parameters from Gaia photometry and parallaxes. Chemical abundances were derived using spectrum synthesis and model atmospheres.Results. We determined chemical abundances of 26 species of 18 elements: Na, Mg, Al, Si, Ca, Sc, Ti, V, Cr, Mn, Fe, Co, Ni, Cu, Zn, Sr, Y, and Zr. For several stars, we were able to measure both neutral and ionised species, including...
We use a large set of high S/N, high resolution spectra of 19 stars with -2.8 <[Fe/H]< 0 to study th...
For the first time, we present an extensive study of stars with individual non-LTE (NLTE) abundances...
Abstract. Detailed abundances of 9 eld A and Am stars are derived for Mg, Ca, Sc, Cr, Fe, and Ni usi...
International audienceAims. The Chemical Evolution of R-process Elements in Stars (CERES) project ai...
Context. The chemical composition of extremely metal-poor stars (EMP stars; [Fe/H] < similar to -3) ...
Context. Moderately r-process-enriched stars (r-I; +0.3 ≤ [Eu/Fe] ≤ +1.0) are at least four times...
Context. Moderately r-process-enriched stars (r-I; +0.3 ≤ [Eu/Fe] ≤ +1.0) are at least four times as...
Context. Elements heavier than iron are produced through neutron-capture processes in the different ...
Pages: 11 (+ 6 online material), Figures: 14, Tables: 4 (+ 2 online material)International audienceT...
We present elemental abundances of 118 stars (28 of which are known extrasolar planetary host stars)...
Aims. To understand the formation and evolution of the different stellar populations within our Gala...
We have derived elemental abundances of O, Na, Mg, Al, Si, Ca, Ti, Cr, Mn, Fe, Co, Ni as well as for...
Context. The chemical abundances of metal-poor halo stars are important to understanding key aspects...
We performed a uniform and detailed abundance analysis of 12 refractory elements (Na, Mg, Al, Si, Ca...
Context. Elements heavier than iron are produced through neutron-capture processes in the different ...
We use a large set of high S/N, high resolution spectra of 19 stars with -2.8 <[Fe/H]< 0 to study th...
For the first time, we present an extensive study of stars with individual non-LTE (NLTE) abundances...
Abstract. Detailed abundances of 9 eld A and Am stars are derived for Mg, Ca, Sc, Cr, Fe, and Ni usi...
International audienceAims. The Chemical Evolution of R-process Elements in Stars (CERES) project ai...
Context. The chemical composition of extremely metal-poor stars (EMP stars; [Fe/H] < similar to -3) ...
Context. Moderately r-process-enriched stars (r-I; +0.3 ≤ [Eu/Fe] ≤ +1.0) are at least four times...
Context. Moderately r-process-enriched stars (r-I; +0.3 ≤ [Eu/Fe] ≤ +1.0) are at least four times as...
Context. Elements heavier than iron are produced through neutron-capture processes in the different ...
Pages: 11 (+ 6 online material), Figures: 14, Tables: 4 (+ 2 online material)International audienceT...
We present elemental abundances of 118 stars (28 of which are known extrasolar planetary host stars)...
Aims. To understand the formation and evolution of the different stellar populations within our Gala...
We have derived elemental abundances of O, Na, Mg, Al, Si, Ca, Ti, Cr, Mn, Fe, Co, Ni as well as for...
Context. The chemical abundances of metal-poor halo stars are important to understanding key aspects...
We performed a uniform and detailed abundance analysis of 12 refractory elements (Na, Mg, Al, Si, Ca...
Context. Elements heavier than iron are produced through neutron-capture processes in the different ...
We use a large set of high S/N, high resolution spectra of 19 stars with -2.8 <[Fe/H]< 0 to study th...
For the first time, we present an extensive study of stars with individual non-LTE (NLTE) abundances...
Abstract. Detailed abundances of 9 eld A and Am stars are derived for Mg, Ca, Sc, Cr, Fe, and Ni usi...