High-resolution abundance analysis of very metal-poor r-I stars
arXiv:1404.0234 · doi:10.1051/0004-6361/201423826
Abstract
Moderately r-process-enriched stars (r-I) are at least four times as common as those that are greatly enriched in r-process elements (r-II), and the abundances in their atmospheres are important tools for obtaining a better understanding of the nucleosynthesis processes responsible for the origin of the elements beyond the iron peak. The main aim of this work is to derive abundances for a sample of seven metal-poor stars with classified as r-I stars, to understand the role of these stars for constraining the astrophysical nucleosynthesis event(s) that is(are) responsible for the production of the r-process, and to investigate whether they differ, in any significant way, from the r-II stars. We carried out a detailed abundance analysis based on high-resolution spectra obtained with the VLT/UVES spectrograph. The OSMARCS LTE 1D model atmosphere grid was employed, along with the spectrum synthesis code Turbospectrum. We have derived abundances of light elements Li, C, and N, alpha-elements, odd-Z elements, iron-peak elements, and the trans-iron elements from the first peak, the second peak, the third peak, and the actinides regions. The results are compared with values for these elements for r-II and normal very and extremely metal-poor stars reported in the literature, ages based on radioactive chronometry are explored using different models, and a number of conclusions about the r-process and the r-I stars are presented. Hydrodynamical models were used for some elements, and general behaviors for the 3D corrections were presented.
24 pages, 31 figures, accepted by A&A
References in corpus (14)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Magnetorotationally driven Supernovae as the origin of early galaxy -process elements?
- Carbon Enhanced Metal-Poor Stars. I. Chemical Compositions of 26 Stars
- First stars VI - Abundances of C, N, O, Li, and mixing in extremely metal-poor giants. Galactic evolution of the light elements
- First Stars VIII -- Enrichment of the neutron-capture elements in the early Galaxy
- Near-UV Observations of HD221170: New Insights into the Nature of r-Process-Rich Stars
- New Rare Earth Element Abundance Distributions for the Sun and Five r-Process-Rich Very Metal-Poor Stars
- Nucleosynthesis in the Early Galaxy
- Improved Laboratory Transition Probabilities for Ce II, Application to the Cerium Abundances of the Sun and Five r-process Rich, Metal-Poor Stars, and Rare Earth Lab Data
- NLTE determination of the aluminium abundance in a homogeneous sample of extremely metal-poor stars
- Evolution of the Barium abundance in the early Galaxy from a NLTE analysis of the Ba lines in a homogeneous sample of EMP stars
- Broadband UBVRI Photometry of Horizontal-Branch and Metal-Poor Candidates from the HK and Hamburg/ESO Surveys. I
- Cold r-Process in Neutrino-Driven Winds
- Origin of the heavy elements in HD 140283. Measurement of europium abundance
Cited by in corpus (36)
- The dynamical mass ejection from binary neutron star mergers: Radiation-hydrodynamics study in general relativity
- An R-process enhanced star in the dwarf galaxy Tucana III
- The R-process Alliance: First Magellan/MIKE Release from the Southern Search for R-Process-enhanced Stars
- Comprehensive study of mass ejection and nucleosynthesis in binary neutron star mergers leaving short-lived massive neutron stars
- The Hamburg/ESO R-process Enhanced Star survey (HERES) X. HE 2252-4225, one more r-process enhanced and actinide-boost halo star
- Neutrino transport in black hole-neutron star binaries: neutrino emission and dynamical mass ejection
- Nine New Metal-Poor Stars on the Subgiant and Red Horizontal Branches with High Levels of r-process Enhancement
- RAVE J203843.2-002333: The first highly r-process-enhanced star identified in the RAVE survey
- Galactic Chemical Evolution: the Impact of the 13C-pocket Structure on the s-process Distribution
- The R-Process Alliance: Chemo-Dynamically Tagged Groups of Halo -Process-Enhanced Stars Reveal a Shared Chemical-Evolution History
- The R-Process Alliance: The Peculiar Chemical Abundance Pattern of RAVE J183013.5-455510
- Constraints on stellar rotation from the evolution of Sr and Ba in the Galactic halo
- The R-Process Alliance: Abundance Universality among Some Elements at and between the First and Second R-Process Peaks
- The R-Process Alliance: J1521-3538, a very metal-poor, extremely r-process-enhanced star with [Eu/Fe]=+2.2, and the class of r-III stars
- R-process-rich stellar streams in the Milky Way
- The R-Process Alliance: Chemo-Dynamically Tagged Groups II. An Extended Sample of Halo -Process-Enhanced Stars
- Chemical Evolution of R-process Elements in Stars (CERES). I. Stellar parameters and chemical abundances from Na to Zr
- Diversity of Abundance Patterns of Light Neutron-capture Elements in Very-metal-poor Stars
- Trans-iron Ge, As, Se, and heavier elements in the dwarf metal-poor stars, HD~19445, HD~84937, HD~94028, HD~140283, and HD~160617
- Reconstructing Masses of Merging Neutron Stars from Stellar -Process Abundance Signatures
- Decoding the compositions of four bright -process-enhanced stars
- Inferring the velocity of early massive stars from the abundances of extremely metal-poor stars
- The Occurrence and Impact of Carbon-Oxygen Shell Mergers in Massive Stars
- Chemical Evolution of R-process Elements in Stars (CERES). III. Chemical abundances of neutron capture elements from Ba to Eu
- Heavy elements in old very metal-rich stars
- Europium enrichment and hierarchical formation of the Galactic halo
- A Nuclear Equation of State Inferred from Stellar r-process Abundances
- A Modified Initial Mass Function of the First Stars with Explodability Theory under Different Enrichment Scenarios
- Discovery of a pair of very metal-poor stars enriched in neutron-capture elements: The proto-disk r-II star BPS CS 29529-0089 and the Gaia-Sausage-Enceladus r-I star TYC 9219-2422-1
- Stellar s-process neutron capture cross section of Ce isotopes
- Detection of the actinide Th in an r-process-enhanced star with accretion origin
- An Actinide-boost Star Discovered in the Gaia-Sausage-Enceladus
- First Star Survivors as Metal-Rich Halo Stars that Experienced Supernova Explosions in Binary Systems
- Recent Advances in Understanding R-Process Nucleosynthesis in Metal-Poor Stars and Stellar Systems
- Neutron-capture elements in a sample of field metal-poor N-rich dwarfs
- On the Chemical Composition of the Evolved Very Bright Metal-Poor Star HD 1936