Click on the DOI link below to access the article (may not be free).Recent work has shown that most globular clusters have at least two chemically distinct components, as well as cluster-to-cluster differences in the mean [O/Fe], [Mg/Fe], and [Si/Fe] ratios at similar [Fe/H] values. In order to investigate the implications of variations in the abundances of these and other metals for H-R diagrams and predicted ages, grids of evolutionary sequences have been computed for scaled solar and enhanced alpha-element metal abundances, and for mixtures in which the assumed [m/Fe] value for each of the metals C, N, O, Ne, Na, Mg, Si, S, Ca, and Ti has been increased, in turn, by 0.4 dex at constant [Fe/H]. These tracks, together with isochrones for a...
We present observations of ten metal-poor halo stars with the metallicity range -2.3<[Fe/H]<-1...
Context. High-precision determinations of abundances of elements in the atmospheres of the Sun and s...
Context. The globular cluster HP 1 is projected at only 3.\u30a33 from the Galactic center. Together...
We have derived abundances of O, Na, Mg, Al, Si, Ca, Sc, Ti, V, Cr, Fe, Ni, and Ba for 43 metal-poor...
Stellar evolutionary tracks for $0.12 \le M/M_\odot \le 1.0$ have been computed for each of several ...
We have derived elemental abundances of O, Na, Mg, Al, Si, Ca, Ti, Cr, Mn, Fe, Co, Ni as well as for...
We have derived elemental abundances of O, Na, Mg, Al, Si, Ca, Ti, Cr, Mn, Fe, Co, Ni as well as for...
Aims. Previous high-precision studies of abundances of elements in solar twin stars are extended to ...
We present abundance ratios for O, Na, Si Ca, Ti, Cr, and Ni with respect to Fe in a sample of stars...
Click on the DOI link to access the article (may not be free).Canonical grids of stellar evolutionar...
We present updated stellar population models appropriate for old ages (>1 Gyr) and covering a wid...
Context. The spatial distribution of elemental abundances in the disc of our Galaxy gives insights b...
Context. The detailed chemical abundances of extremely metal-poor (EMP) stars are key guides to unde...
For the first time, we present an extensive study of stars with individual non-LTE (NLTE) abundances...
Context.The formation scenario of the Galactic thick disk is an unresolved problem. Chemical abunda...
We present observations of ten metal-poor halo stars with the metallicity range -2.3<[Fe/H]<-1...
Context. High-precision determinations of abundances of elements in the atmospheres of the Sun and s...
Context. The globular cluster HP 1 is projected at only 3.\u30a33 from the Galactic center. Together...
We have derived abundances of O, Na, Mg, Al, Si, Ca, Sc, Ti, V, Cr, Fe, Ni, and Ba for 43 metal-poor...
Stellar evolutionary tracks for $0.12 \le M/M_\odot \le 1.0$ have been computed for each of several ...
We have derived elemental abundances of O, Na, Mg, Al, Si, Ca, Ti, Cr, Mn, Fe, Co, Ni as well as for...
We have derived elemental abundances of O, Na, Mg, Al, Si, Ca, Ti, Cr, Mn, Fe, Co, Ni as well as for...
Aims. Previous high-precision studies of abundances of elements in solar twin stars are extended to ...
We present abundance ratios for O, Na, Si Ca, Ti, Cr, and Ni with respect to Fe in a sample of stars...
Click on the DOI link to access the article (may not be free).Canonical grids of stellar evolutionar...
We present updated stellar population models appropriate for old ages (>1 Gyr) and covering a wid...
Context. The spatial distribution of elemental abundances in the disc of our Galaxy gives insights b...
Context. The detailed chemical abundances of extremely metal-poor (EMP) stars are key guides to unde...
For the first time, we present an extensive study of stars with individual non-LTE (NLTE) abundances...
Context.The formation scenario of the Galactic thick disk is an unresolved problem. Chemical abunda...
We present observations of ten metal-poor halo stars with the metallicity range -2.3<[Fe/H]<-1...
Context. High-precision determinations of abundances of elements in the atmospheres of the Sun and s...
Context. The globular cluster HP 1 is projected at only 3.\u30a33 from the Galactic center. Together...