Rubidium in Metal-Deficient Disk and Halo Stars
arXiv:astro-ph/9905164 · doi:10.1086/307735
Abstract
We report the first extensive study of stellar Rb abundances. High-resolution spectra have been used to determine, or set upper limits on, the abundances of this heavy element and the associated elements Y, Zr, and Ba in 44 dwarfs and giants with metallicities spanning the range -2.0 <[Fe/H] < 0.0. In metal-deficient stars Rb is systematically overabundant relative to Fe; we find an average [Rb/Fe] of +0.21 for the 32 stars with [Fe/H] < -0.5 and measured Rb. This behavior contrasts with that of Y, Zr, and Ba, which, with the exception of three new CH stars (HD 23439A and B and BD +5 3640), are consistently slightly deficient relative to Fe in the same stars; excluding the three CH stars, we find the stars with [Fe/H] < -0.5 have average [Y/Fe], [Zr/Fe], and [Ba/Fe] of --0.19 (24 stars), --0.12 (28 stars), and --0.06 (29 stars), respectively. The different behavior of Rb on the one hand and Y, Zr, and Ba on the other can be attributed in part to the fact that in the Sun and in these stars Rb has a large r-process component while Y, Zr, and Ba are mostly s-process elements with only small r-process components. In addition, the Rb s-process abundance is dependent on the neutron density at the s-processing site. Published observations of Rb in s-process enriched red giants indicate a higher neutron density in the metal-poor giants. These observations imply a higher s-process abundance for Rb in metal-poor stars. The calculated combination of the Rb r-process abundance, as estimated for the stellar Eu abundances, and the s-process abundance as estimated for red giants accounts satisfactorily for the observed run of [Rb/Fe] with [Fe/H].
23 pages, 5 tables, 7 figures
Cited by in corpus (56)
- The Geneva-Copenhagen survey of the Solar neighbourhood: Ages, metallicities, and kinematic properties of 14,000 F and G dwarfs
- The s Process: Nuclear Physics, Stellar Models, Observations
- Galactic Evolution of Sr, Y, Zr: A Multiplicity of Nucleosynthetic Processes
- Nucleosynthesis and mixing on the Asymptotic Giant Branch. III. Predicted and observed s-process abundances
- The Rise of the s-Process in the Galaxy
- Galactic Chemical Evolution and solar s-process abundances: dependence on the 13C-pocket structure
- Gaia FGK Benchmark Stars: Effective temperatures and surface gravities
- Medium-resolution Isaac Newton Telescope library of empirical spectra - II. The stellar atmospheric parameters
- Elemental Abundance Ratios in Stars of the Outer Galactic Disk. I. Open Clusters
- An ancient extrasolar system with five sub-Earth-size planets
- Accurate fundamental parameters for Lower Main Sequence Stars
- Chemistry of the Sagittarius Dwarf Galaxy: a Top-Light IMF, Outflows and the R-Process
- The Kr85 s-process Branching and the Mass of Carbon Stars
- Abundances in giant stars of the globular cluster NGC 6752
- Rubidium-Rich Asymptotic Giant Branch Stars
- Lead: Asymptotic Giant Branch production and Galactic Chemical Evolution
- The cosmic production of Helium
- The Isotopic Abundances of Magnesium in Stars
- Keck-Nirspec Infrared OH Lines: Oxygen Abundances in Metal-Poor Stars Down to [Fe/H] = -2.9
- Gemini-Phoenix infrared high-resolution abundance analysis of five giants in the bulge globular cluster NGC 6553
- Magnesium isotopic abundance ratios in cool stars
- Analysis of 26 Barium Stars I. Abundances
- The radii of the nearby K5V and K7V stars 61 Cyg A & B - CHARA/FLUOR interferometry and CESAM2k modeling
- Calibrating the metallicity of M dwarfs in wide physical binaries with F-, G-, and K- primaries - I: High-resolution spectroscopy with HERMES: stellar parameters, abundances, and kinematics
- Oxygen Abundances in Metal-Poor Stars (-2.2 < [Fe/H] < -1.2) from Infrared OH lines
- Empirically Constrained Color-Temperature Relations. II. uvby
- Rubidium and lead abundances in giant stars of the globular clusters M4 and M5
- Comprehensive abundance analysis of red giants in the open clusters NGC 2527, 2682, 2482, 2539, 2335, 2251 and 2266
- Effective temperatures, rotational velocities, microturbulent velocities and abundances in the atmospheres of the Sun,. HD1835 and HD10700
- Rubidium and lead abundances in giant stars of the globular clusters M 13 and NGC 6752
- Analysis of 26 Barium Stars II. Contributions of s-, r- and p-processes in the production of heavy elements
- The Infrared Telescope Facility (IRTF) spectral library: spectral diagnostics for cool stars
- Atmospheric parameters and chemical properties of red giants in the CoRoT asteroseismology fields
- Elemental Abundance Ratios in Stars of the Outer Galactic Disk. II. Field Red Giants
- An Improved Metallicity Calibration with UBV Photometry
- The Age of the Inner Halo Globular Cluster NGC 6652
- Potassium Abundances in Red Giants of Mildly to Very Metal-Poor Globular Clusters
- Mapping the Galactic Halo IV. Finding Distant Giants Reliably with the Washington System
- On the internal pollution mechanisms in the globular cluster NGC 6121 (M4): heavy-element abundances and AGB models
- The CARMENES search for exoplanets around M dwarfs: Rubidium abundances in nearby cool stars
- FeI lines in 0.91-1.33 m spectra of red giants for measuring the microturbulence and metallicities
- A search for cool subdwarfs: Stellar parameters for 134 candidates
- Rubidium abundances in the globular clusters NGC 6752, NGC 1904 and NGC 104 (47 Tuc)
- The uvbyHbeta Metallicity Calibration for G and K Dwarfs
- Chromospheric changes in K stars with activity
- The Interstellar Rubidium Isotope Ratio toward Rho Ophiuchi A
- Characterizing Kepler Asteroseismic Targets
- High-resolution spectroscopic analysis of four new chemically peculiar stars
- Rubidium in the Interstellar Medium
- The 10830 He I Absorption Line Among Metal-Poor Subdwarfs
- HD 11397 and HD 14282 - Two new barium stars?
- Rubidium abundances of galactic disk stars
- Transformations between 2MASS, SDSS and BVI photometric systems for late-type giants
- Identification of metal-poor stars using the artificial neural network
- Rubidium abundances in solar metallicity stars
- [Rb/Zr] ratio in Ba stars as diagnostics of the companion AGB stellar mass