Context. The photospheric abundances of evolved solar-type stars of different metallicities serve as probes into stellar evolution theory. Aims: Stellar photospheres of post-asymptotic giant branch (post-AGB) stars bear witness to the internal chemical enrichment processes, integrated over their entire stellar evolution. Here we study post-AGB stars in the Large Magellanic Cloud (LMC). With their known distances, these rare objects are ideal tracers of AGB nucleosynthesis and dredge-up phenomena. Methods: We used the UVES spectrograph mounted on the Very Large Telescope at the European Southern Observatory, to obtain high-resolution spectra with high signal-to-noise of a sample of four post-AGB stars. The objects display a spectral energy d...
Context. Hot post-AGB stars are luminous objects of low- and intermediate mass (0.8–8 M⊙) in the fi...
Low- to intermediate-mass stars (0.8 - 7 M{u2299}) are interesting in a broad astronomical context b...
Context. This paper is part of a larger project in which we systematically study the chemical abunda...
Context. The photospheric abundances of evolved solar-type stars of different metallicities serve as...
Context. The photospheric abundances of evolved solar-type stars of different metallicities serve as...
Context. This paper is part of a larger project in which we systematically study the chemical abunda...
Context. This paper is part of a larger project in which we want to focus on the still poorly unders...
One of the most fascinating stages in the life of low- and intermediate mass stars is the asymptotic...
Context. Our understanding of the s-process nucleosynthesis in asymptotic giant branch (AGB) stars i...
Context.Abundance analysis of post-AGB objects as probes of AGB nucleosynthesis. Aims.A deta...
The detected variety in chemistry and circumstellar shell morphology of the limited sample of Galact...
Context. The asymptotic giant branch (AGB) phase of evolution in low- and intermediate-mass stars is...
Context. Abundance analysis of post-AGB objects as probes of AGB nucleosynthesis. Aims. A detailed p...
Context. This paper is part of a larger project in which we systematically study the chemical abunda...
Context. This paper is part of a larger project in which we systematically study the chemical abunda...
Context. Hot post-AGB stars are luminous objects of low- and intermediate mass (0.8–8 M⊙) in the fi...
Low- to intermediate-mass stars (0.8 - 7 M{u2299}) are interesting in a broad astronomical context b...
Context. This paper is part of a larger project in which we systematically study the chemical abunda...
Context. The photospheric abundances of evolved solar-type stars of different metallicities serve as...
Context. The photospheric abundances of evolved solar-type stars of different metallicities serve as...
Context. This paper is part of a larger project in which we systematically study the chemical abunda...
Context. This paper is part of a larger project in which we want to focus on the still poorly unders...
One of the most fascinating stages in the life of low- and intermediate mass stars is the asymptotic...
Context. Our understanding of the s-process nucleosynthesis in asymptotic giant branch (AGB) stars i...
Context.Abundance analysis of post-AGB objects as probes of AGB nucleosynthesis. Aims.A deta...
The detected variety in chemistry and circumstellar shell morphology of the limited sample of Galact...
Context. The asymptotic giant branch (AGB) phase of evolution in low- and intermediate-mass stars is...
Context. Abundance analysis of post-AGB objects as probes of AGB nucleosynthesis. Aims. A detailed p...
Context. This paper is part of a larger project in which we systematically study the chemical abunda...
Context. This paper is part of a larger project in which we systematically study the chemical abunda...
Context. Hot post-AGB stars are luminous objects of low- and intermediate mass (0.8–8 M⊙) in the fi...
Low- to intermediate-mass stars (0.8 - 7 M{u2299}) are interesting in a broad astronomical context b...
Context. This paper is part of a larger project in which we systematically study the chemical abunda...