Constraints on the Formation of the Galactic Bulge from Na, Al, and Heavy Element Abundances in Plaut's Field
arXiv:1202.4481 · doi:10.1088/0004-637X/749/2/175
Abstract
We report chemical abundances of Na, Al, Zr, La, Nd, and Eu for 39 red giant branch (RGB) stars and 23 potential inner disk red clump stars located in Plaut-s low extinction window. We also measure lithium for a super Li-rich RGB star. The abundances were determined by spectrum synthesis of high resolution (R~25,000), high signal-to-noise (S/N~50-100 pixel-1) spectra obtained with the Blanco 4m telescope and Hydra multifiber spectrograph. For the bulge RGB stars, we find a general increase in the [Na/Fe] and [Na/Al] ratios with increasing metallicity, and a similar decrease in [La/Fe] and [Nd/Fe]. Additionally, the [Al/Fe] and [Eu/Fe] abundance trends almost identically follow those of the α-elements, and the [Zr/Fe] ratios exhibit relatively little change with [Fe/H]. The consistently low [La/Eu] ratios of the RGB stars indicate that at least a majority of bulge stars formed rapidly (<1 Gyr) and before the main s-process could become a significant pollution source. In contrast, we find that the potential inner disk clump stars exhibit abundance patterns more similar to those of the thin and thick disks. Comparisons between the abundance trends at different bulge locations suggest that the inner and outer bulge formed on similar timescales. However, we find evidence of some abundance differences between the most metal-poor and metal-rich stars in various bulge fields. The data also indicate that the halo may have had a more significant impact on the outer bulge initial composition than the inner bulge composition. The [Na/Fe] and to a lesser extent [La/Fe] abundances further indicate that the metal-poor bulge, at least at ~1 kpc from the Galactic center, and thick disk may not share an identical chemistry.
Accepted for publication in ApJ; 66 pages, 17 figures, 3 tables; prior to publication, data tables in electronic form will be made available upon request
References in corpus (18)
- The r-process of stellar nucleosynthesis: Astrophysics and nuclear physics achievements and mysteries
- Galactic chemical evolution: Carbon through Zinc
- Fast rotating massive stars and the origin of the abundance patterns in galactic globular clusters
- alpha-, r-, and s-process element trends in the Galactic thin and thick disks
- First Stars VIII -- Enrichment of the neutron-capture elements in the early Galaxy
- Oxygen, Sodium, Magnesium and Aluminium as tracers of the Galactic Bulge Formation
- Chemical similarities between Galactic bulge and local thick disk red giant stars
- Chemical evolution of the Galactic bulge as traced by microlensed dwarf and subgiant stars. IV. Two bulge populations
- Stellar Proper Motions in the Galactic Bulge from deep HST ACS/WFC Photometry
- Neutron-capture elements in the very metal-poor star HD88609: another st ar with excesses of light neutron-capture elements
- NLTE determination of the aluminium abundance in a homogeneous sample of extremely metal-poor stars
- s-Process Nucleosynthesis in Advanced Burning Phases of Massive Stars
- A model for the Globular Cluster extreme anomalies
- Formation & evolution of the Galactic bulge: constraints from stellar abundances
- Metal-Poor Lithium-Rich Giants in the Radial Velocity Experiment Survey
- Lithium abundances along the RGB: FLAMES-GIRAFFE spectra of a large sample of low-mass Bulge stars
- Proper Motions in the Galactic Bulge: Plaut's Window
- Reconciling the Galactic Bulge Turnoff Age Discrepancy with Enhanced Helium Enrichment
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