Heavy elements Ba, La, Ce, Nd, and Eu in 56 Galactic bulge red giants
arXiv:1511.03919 · doi:10.1051/0004-6361/201525709
Abstract
Aims. The aim of this work is the study of abundances of the heavy elements Ba, La, Ce, Nd, and Eu in 56 bulge giants (red giant branch and red clump) with metallicities ranging from -1.3 dex to 0.5 dex. Methods. We obtained high-resolution spectra of our giant stars using the FLAMES-UVES spectrograph on the Very Large Telescope. We inspected four bulge fields along the minor axis. Results. We measure the chemical evolution of heavy elements, as a function of metallicity, in the Galactic bulge. Conclusions. The [Ba, La, Ce, Nd/Fe] vs. [Fe/H] ratios decrease with increasing metallicity, in which aspect they differ from disc stars. In our metal-poor bulge stars, La and Ba are enhanced relative to their thick disc counterpart, while in our metal-rich bulge stars La and Ba are underabundant relative to their disc counterpart. Therefore, this contrast between bulge and discs trends indicates that bulge and (solar neighbourhood) thick disc stars could behave differently. An increase in [La, Nd/Eu] with increasing metallicity, for metal-rich stars with [Fe/H] > 0 dex, may indicate that the s-process from AGB stars starts to operate at a metallicity around solar. Finally, [Eu/Fe] follows the [α/Fe] behaviour, as expected, since these elements are produced by SNe type II.
12 pages, 10 figures, accepted for publication in A&A
References in corpus (14)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- alpha-, r-, and s-process element trends in the Galactic thin and thick disks
- Bulge Formation by the Coalescence of Giant Clumps in Primordial Disk Galaxies
- Galactic Chemical Evolution and solar s-process abundances: dependence on the 13C-pocket structure
- Oxygen, Sodium, Magnesium and Aluminium as tracers of the Galactic Bulge Formation
- Stellar Proper Motions in the Galactic Bulge from deep HST ACS/WFC Photometry
- The Gaia-ESO Survey: metallicity and kinematic trends in the Milky Way bulge
- Iron and neutron-capture element abundance variations in the globular cluster M2 (NGC 7089)
- Formation & evolution of the Galactic bulge: constraints from stellar abundances
- High-resolution abundance analysis of red giants in the globular cluster NGC 6522
- The Evolution of Oxygen and Magnesium in the Bulge and Disk of the Milky Way
- Massive Stars and their Supernovae
- Origin of the heavy elements in HD 140283. Measurement of europium abundance
- Heavy elements in old very metal-rich stars
Cited by in corpus (33)
- Chemodynamical history of the Galactic Bulge
- The Gaia-ESO Survey: Exploring the complex nature and origins of the Galactic bulge populations
- Phylogeny of the Milky Way's inner disk and bulge populations: Implications for gas accretion, (the lack of) inside-out thick disk formation, and quenching
- The Chemical Composition of the Galactic Bulge and Implications for its Evolution
- Chemical analysis of NGC 6528: one of the most metal-rich bulge globular cluster
- Hiding its age: the case for a younger bulge
- Abundances of disk and bulge giants from high-resolution optical spectra -- IV. Zr, La, Ce, Eu
- The peculiar Na-O anticorrelation of the bulge globular cluster NGC 6440
- High-resolution abundance analysis of red giants in the metal-poor bulge globular cluster HP~1
- The chemical composition of globular clusters in the Local Group
- Abundances of disk and bulge giants from hi-res optical spectra: II. O, Mg, Ca, and Ti in the bulge sample
- Globular Cluster Abundances from High-Resolution, Integrated-Light Spectroscopy. II. Expanding the Metallicity Range for Old Clusters and Updated Analysis Techniques
- Blanco DECam Bulge Survey (BDBS) II: Project Performance, Data Analysis, and Early Science Results
- High-resolution abundance analysis of four red giants in the globular cluster NGC 6558
- Modelling the chemical evolution of Zr, La, Ce and Eu in the Galactic discs and bulge
- Chemical Complexity in the Eu-enhanced Monometallic Globular Cluster NGC 5986
- Exploring the Chemical Composition and Double Horizontal Branch of the Bulge Globular Cluster NGC 6569
- Chemical Study of the Metal-rich Globular Cluster NGC 5927
- Looking for imprints of the first stellar generations in metal-poor bulge field stars
- HERBS I: Metallicity and alpha enhancement along the Galactic bulge minor axis
- Chemical abundances in the metal-intermediate GC NGC 6723
- Abundance analysis of APOGEE spectra for 58 metal-poor stars from the bulge spheroid
- HERBS II: Detailed chemical compositions of Galactic bulge stars
- Detailed chemical abundance analysis of the thick disk star cluster Gaia 1
- The Pristine Inner Galaxy Survey (PIGS) VII: a discovery of the first inner Galaxy CEMP-r/s star
- Searching for a kinematic signature of the moderately metal-poor stars in the Milky Way bulge using N-body simulations
- Cobalt and copper abundances in 56 Galactic bulge red giants
- Chemical analysis of eight giant stars of the globular cluster NGC 6366
- Chemical analysis of three barium stars: HD 51959, HD 88035, HD 121447
- Abundance analysis of s-process enhanced barium stars
- Abundances of disk and bulge giants from high-resolution optical spectra V. Molybdenum -- the p-process element
- The first r-process enhanced star confirmed to be a member of the Galactic bulge
- UVES analysis of red giants in the bulge globular cluster NGC 6522