Abundances in the Uranium-Rich Star CS 31082-001
arXiv:astro-ph/0104456 · doi:10.1086/320266
Abstract
The recent discovery by Cayrel et al. of U in CS 31082-001 along with Os and Ir at greatly enhanced abundances but with [Fe/H]=-2.9 strongly reinforces the argument that there are at least two kinds of SNII sources for r-nuclei. One source is the high-frequency H events responsible for heavy r-nuclei (A>135) but not Fe. The H-yields calculated from data on other ultra-metal-poor stars and the sun provide a template for quantitatively predicting the abundances of all other r-elements. In CS 31082-001 these should show a significant deficiency at A<135 relative to the solar r-pattern. It is proposed that CS 31082-001 should have had a companion that exploded as an SNII H event. If the binary survived the explosion, this star should now have a compact companion, most likely a stellar-mass black hole. Comparison of abundance data with predicted values and a search for a compact companion should provide a stringent test of the proposed r-process model. The U-Th age determined by Cayrel et al. for CS 31082-001 is, to within substantial uncertainties, in accord with the r-process age determined from solar system data. The time gap between Big Bang and onset of normal star formation only allows r-process chronometers to provide a lower limit on the age of the universe.
5 pages, 1 figure
References in corpus (1)
Cited by in corpus (21)
- The extreme r-element rich, iron-poor halo giant CS31082-001: Implications for the r-process site(s) and radioactive cosmochronology
- Nucleosynthesis and mixing on the Asymptotic Giant Branch. III. Predicted and observed s-process abundances
- Neutron star mergers versus core-collapse supernovae as dominant r-process sites in the early Galaxy
- Near-UV Observations of HD221170: New Insights into the Nature of r-Process-Rich Stars
- Tuning the Clock: Uranium and Thorium Chronometers Applied to CS 31082-001
- The Hamburg/ESO R-process Enhanced Star survey (HERES) III. HE 0338-3945 and the formation of the r+s stars
- The Hamburg/ESO R-process Enhanced Star survey (HERES). I. Project description, and discovery of two stars with strong enhancements of neutron-capture elements
- The Chemical Composition of Carbon-Rich, Very Metal-Poor Stars: A New Class of Mildly Carbon-Rich Objects Without Excess of Neutron-Capture Elements
- An R-process enhanced star in the dwarf galaxy Tucana III
- The Origin of the Heavy Elements: Recent Progress in the Understanding of the r-Process
- Abundance Analysis of HE2148-1247, A Star With Extremely Enhanced Neutron Capture Elements
- Elemental abundances and classification of CEMP stars
- Stellar Sources for Heavy r-Process Nuclei
- Determination of Nucleosynthetic Yields of Supernovae and Very Massive Stars from Abundances in Metal-Poor Stars
- A Model for Abundances in Metal-Poor Stars
- Spectroscopic Studies of Extremely Metal-Poor Stars with Subaru/HDS:I. Observational Data
- Measurement of the Europium Isotope Ratio for the Extremely Metal-Poor, r-Process-Enhanced Star CS31082-001
- The Binary Frequency of r-Process-Element Enhanced Metal-Poor Stars and its Implications: Chemical Tagging in the Primitive Halo of the Milky Way
- Supernova SN1987A Revisited as a Major Production Site for r-Process Elements
- Observational nuclear astrophysics: neutron-capture element abundances in old, metal-poor stars
- Upper Limits on the X-ray Emission of "Uranium" Stars