A high-resolution spectral analysis of three carbon-enhanced metal-poor stars
arXiv:astro-ph/0608106 · doi:10.1111/j.1365-2966.2006.10877.x
Abstract
We present results of an analysis of high-resolution spectra obtained with the Subaru Telescope High Dispersion Spectrograph, of two Carbon-Enhanced Metal-Poor stars, HE 1305+0007 and HE 1152-0355, and of the classical CH star HD 5223. All of these stars have relatively low effective temperatures (4000-4750 K) and high carbon abundances. The stellar atmospheric parameters indicate that they all have surface gravities consistent with a present location on the red-giant branch, and metallicities of [Fe/H] = -2.0 (HE 1305+0007, HD 5223) and [Fe/H]= -1.3 (HE 1152-0355). In addition to their large enhancements of carbon all three stars exhibit strong enhancements of the s-process elements relative to iron. HE 1305+0007 exhibits a large enhancement of the 3rd-peak s-process element lead, with [Pb/Fe] = +2.37, as well as a high abundance of the r-process element europium, [Eu/Fe] = +1.97. Thus, HE 1305+0007 joins the growing class of the so-called ``Lead Stars'', and also the class of objects that exhibit the presence of both r-process and s-process elements, the CEMP-r/s stars. The large enhancement of n-capture elements exhibited by HE 1152-0355 and HD 5223 are more consistent with the abundance patterns generally noticed in CH stars. The elemental abundance distributions observed in these stars are discussed in the light of existing theories of CH star formation, as well as the suggested formation scenarios of the CEMP-r/s group.
19 pages, 11 figures, MNRAS format, accepted for publication in MNRAS
References in corpus (4)
Cited by in corpus (38)
- Carbon Enhanced Metal-Poor Stars. I. Chemical Compositions of 26 Stars
- Carbon-Enhanced Metal-Poor Star Frequencies in the Galaxy: Corrections for the Effect of Evolutionary Status on Carbon Abundances
- The intermediate neutron-capture process and carbon-enhanced metal-poor stars
- Observational Constraints on First-Star Nucleosynthesis. I. Evidence for Multiple Progenitors of CEMP-no Stars
- The stellar content of the Hamburg/ESO survey. IV. Selection of candidate metal-poor stars
- Iron and s-elements abundance variations in NGC5286: comparison with anomalous globular clusters and Milky Way satellites
- Elemental abundances and classification of CEMP stars
- Learning about the intermediate neutron-capture process from lead abundances
- Constraints of the physics of low-mass AGB stars from CH and CEMP stars
- Low-mass low-metallicity AGB stars as an efficient i-process site explaining CEMP-rs stars
- On the inconsistency of [C/Fe] abundances and the fractions of carbon-enhanced metal-poor stars among various stellar surveys
- Spectroscopic study of CEMP-(s & r/s) stars- Revisiting classification criteria and formation scenarios, highlighting i-process nucleosynthesis
- Near-Infrared Spectroscopy of Carbon-Enhanced Metal-Poor Stars. I. A SOAR/OSIRIS Pilot Study
- Chemical analysis of CH stars - I: atmospheric parameters and elemental abundances
- Chemical analysis of CH stars - II: atmospheric parameters and elemental abundances
- Chemical analysis of CH stars - III: Atmospheric parameters and elemental abundances
- Neutron-capture elements in dwarf galaxies II: Challenges for the s- and i-processes at low metallicity
- Characterizing the companion AGBs using surface chemical composition of barium stars
- Pre-supernova mixing in CEMP-no source stars
- Gaia-Sausage-Enceladus star formation history as revealed by detailed elemental abundances
- Abundances of neutron-capture elements in G 24-25. A halo-population CH subgiant
- Chemical analysis of two extremely metal-poor stars HE 2148-2039 and HE 2155-2043
- The Pristine Inner Galaxy Survey (PIGS) X. Probing the early chemical evolution of the Sagittarius dwarf galaxy with carbon abundances
- The peculiar abundances of HE 1005-1439. A carbon-enhanced extremely metal-poor star contaminated with products of both s-and i-process nucleosynthesis
- Constraining Nucleosynthesis in Two CEMP Progenitors Using Fluorine
- Spectroscopic study of Ba and CEMP-s stars: Mass distribution of AGB progenitors
- High-resolution spectroscopic observations of the new CEMP-s star CD-50776
- Probing the nucleosynthetic contribution of low-metallicity, low-mass star companions of CEMP stars
- Optical and NIR spectroscopy of cool CEMP stars to probe the nucleosynthesis in low mass AGB binary system
- Abundance analysis of s-process enhanced barium stars
- A Catalog of 12,766 Carbon-enhanced Metal-poor Stars from LAMOST Data Release 8
- Modeling the progenitors of low-mass post-accretion binaries
- Fuzzy Cluster Analysis: Application to Determining Metallicities for Very Metal-poor Stars
- Chemical analysis of a carbon-enhanced very metal-poor star: CD-27 14351
- i-process nucleosynthesis: observational evidences from CEMP stars
- Fluorine abundances in CEMP stars at the lowest metallicity: Hints on the nature of the first stars
- LAMOST J045019.27+394758.7, with peculiar abundances of N, Na, V, Zn, is possibly a Sculptor dwarf galaxy escapee
- Neutron-Capture Elements in the Double-Enhanced Star HE 1305-0007: a New s- and r-Process Paradigm