Analysis of 26 Barium Stars I. Abundances
arXiv:astro-ph/0604036 · doi:10.1051/0004-6361:20064912
Abstract
We present a detailed analysis of 26 barium stars, including dwarf barium stars, providing their atmospheric parameters (Teff, log g, [Fe/H], vt) and elemental abundances. We aim at deriving gravities and luminosity classes of the sample stars, in particular to confirm the existence of dwarf barium stars. Accurate abundances of chemical elements were derived. Abundance ratios between nucleosynthetic processes, by using Eu and Ba as representatives of the r- and s-processes are presented. High-resolution spectra with the FEROS spectrograph at the ESO-1.5m Telescope, and photometric data with Fotrap at the Zeiss telescope at the LNA were obtained. The atmospheric parameters were derived in an iterative way, with temperatures obtained from colour-temperature calibrations. The abundances were derived using spectrum synthesis for Li, Na, Al, alpha-, iron peak, s- and r-elements atomic lines, and C and N molecular lines. Atmospheric parameters in the range 4300 < Teff < 6500, -1.2 < [Fe/H] < 0.0 and 1.4 < log g < 4.6 were derived, confirming that our sample contains giants, subgiants and dwarfs. The abundance results obtained for Li, Al, Na, alpha- and iron peak elements for the sample stars show that they are compatible with the values found in the literature for normal disk stars in the same range of metallicities. Enhancements of C, N and heavy elements relative to Fe, that characterise barium stars, were derived and showed that [X/Ba] vs. [Ba/H] and [X/Ba] vs. [Fe/H] present different behaviour as compared to [X/Eu] vs. [Eu/H] and [X/Eu] vs. [Fe/H], reflecting the different nucleosynthetic sites for the s- and r-processes.
32 pages including 18 figures, accepted to A&A
Cited by in corpus (35)
- Both accurate and precise gf-values for FeII lines
- Barium & related stars and their white-dwarf companions I. Giant stars
- Constraints of the physics of low-mass AGB stars from CH and CEMP stars
- Elemental Abundances of Solar Sibling Candidates
- Abundance analysis of barium and mild barium stars
- Analysis of 26 Barium Stars II. Contributions of s-, r- and p-processes in the production of heavy elements
- Barium stars as tracers of s-process nucleosynthesis in AGB stars I. 28 stars with independently derived AGB mass
- Detailed chemical composition of classical Cepheids in the LMC cluster NGC 1866 and in the field of the SMC
- Chemical analysis of CH stars - I: atmospheric parameters and elemental abundances
- Chemical analysis of CH stars - III: Atmospheric parameters and elemental abundances
- Chemical analysis of CH stars - II: atmospheric parameters and elemental abundances
- Heavy elements in barium stars
- Barium and related stars, and their white-dwarf companions. III. The masses of the white dwarfs
- Barium stars as tracers of s-process nucleosynthesis in AGB stars II. Using machine learning techniques on 169 stars
- Young giants of intermediate mass Evidence of rotation and mixing
- Ruthenium and hafnium abundances in giant and dwarf barium stars
- Three new barium dwarfs with WD companions: BD+68 1027, RE J0702+129 and BD+80 670
- Abundances of neutron-capture elements in G 24-25. A halo-population CH subgiant
- HCT/HESP study of two carbon stars from the LAMOST survey
- Spectroscopic study of four metal-poor carbon stars from the Hamburg/ESO Survey: On confirming the low-mass nature of their companions
- Astrophysics in 2006
- Investigating three Sirius-like systems with SPHERE
- High-resolution spectroscopic observations of the new CEMP-s star CD-50776
- Is Germanium (Ge, Z=32) A Neutron-Capture Element?
- Spectroscopic study of Ba and CEMP-s stars: Mass distribution of AGB progenitors
- Probing the nucleosynthetic contribution of low-metallicity, low-mass star companions of CEMP stars
- Chemical composition of giants from two moving groups
- High-resolution spectroscopic analysis of four new chemically peculiar stars
- HD 11397 and HD 14282 - Two new barium stars?
- Ba-enhanced dwarf and subgiant stars in the LAMOST Galactic surveys
- Abundance analysis of s-process enhanced barium stars
- Exploring giant barium stars: ratio and elemental abundances of carbon, nitrogen, and oxygen
- Modeling the progenitors of low-mass post-accretion binaries
- Searching for Barium Stars from the LAMOST Spectra Using the Machine Learning Method: I
- Identifying and characterizing ultracool dwarfs ejected from post-encounter disintegrating systems