Neutron-capture elements in dwarf galaxies II: Challenges for the s- and i-processes at low metallicity
arXiv:1912.06671 · doi:10.1051/0004-6361/201937075
Abstract
The slow () and intermediate () neutron () capture processes occur both in asymptotic giant branch (AGB) stars, and in massive stars. To study the build-up of the - and -products at low metallicity, we investigate the abundances of Y, Ba, La, Nd, and Eu in 98 stars, at , in the Sculptor dwarf spheroidal galaxy. The chemical enrichment from AGB stars becomes apparent at in Sculptor, and causes [Y/Ba], [La/Ba], [Nd/Ba] and [Eu/Ba] to decrease with metallicity, reaching subsolar values at the highest . To investigate individual nucleosynthetic sites, we compared three -rich Sculptor stars with theoretical yields. One carbon-enhanced metal-poor (CEMP-no) star with high is best fit with a model of a rapidly-rotating massive star, the second (likely CH star) with the -process, while the third has no satisfactory fit. For a more general understanding of the build-up of the heavy elements, we calculate for the first time the cumulative contribution of the - and -processes to the chemical enrichment in Sculptor, and compare with theoretical predictions. By correcting for the -process, we derive , , and , in the overall - and/or -process in Sculptor. These abundance ratios are within the range of those of CEMP stars in the Milky Way, which have either - or -process signatures. The low and that we measure in Sculptor are inconsistent with them arising from the -process only, but are more compatible with models of the -process. Thus we conclude that both the - and -processes were important for the build-up of -capture elements in the Sculptor dwarf spheroidal galaxy.
Accepted in A&A, 16 pages, 10 figures, Paper II in series
References in corpus (51)
- Galactic chemical evolution: Carbon through Zinc
- The Dawes Review 2: Nucleosynthesis and stellar yields of low and intermediate-mass single stars
- Magnetorotationally driven Supernovae as the origin of early galaxy -process elements?
- Carbon Enhanced Metal-Poor Stars. I. Chemical Compositions of 26 Stars
- The Star Formation Histories of Local Group Dwarf Galaxies I. Hubble Space Telescope / Wide Field Planetary Camera 2 Observations
- A Search for Stars of Very Low Metal Abundance. VI. Detailed Abundances of 313 Metal-Poor Stars
- Identification of strontium in the merger of two neutron 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
- The kinematic status and mass content of the Sculptor dwarf spheroidal galaxy
- Carbon-Enhanced Metal-Poor Star Frequencies in the Galaxy: Corrections for the Effect of Evolutionary Status on Carbon Abundances
- Galactic Chemical Evolution and solar s-process abundances: dependence on the 13C-pocket structure
- Super and massive AGB stars - IV. Final fates - Initial to final mass relation
- Neutron-capture elements in the very metal-poor star HD122563
- Production of Light Element Primary Process nuclei in neutrino-driven winds
- Analysis and calibration of CaII triplet spectroscopy of Red Giant Branch stars from VLT/FLAMES observations
- The intermediate neutron-capture process and carbon-enhanced metal-poor stars
- The s process in massive stars at low metallicity. Effect of primary N14 from fast rotating stars
- The intermediate r-process in core-collapse supernovae driven by the magneto-rotational instability
- Binarity in Carbon-Enhanced Metal-Poor stars
- Nucleosynthesis in the Early Galaxy
- Evolution and nucleosynthesis of asymptotic giant branch stellar models of low metallicity
- An Elemental Assay of Very, Extremely, and Ultra Metal-Poor Stars
- Silver and palladium help unveil the nature of a second r-process
- Neutron-capture elements in the very metal-poor star HD88609: another st ar with excesses of light neutron-capture elements
- Multi-Element Abundance Measurements from Medium-Resolution Spectra. IV. Alpha Element Distributions in Milky Way Dwarf Satellite Galaxies
- NLTE determination of the sodium abundance in a homogeneous sample of extremely metal-poor stars
- i-process nucleosynthesis and mass retention efficiency in He-shell flash evolution of rapidly accreting white dwarfs
- Evolution of the Barium abundance in the early Galaxy from a NLTE analysis of the Ba lines in a homogeneous sample of EMP stars
- Limits on Pop III star formation with the most iron-poor stars
- Elemental abundances and classification of CEMP stars
- How many nucleosynthesis processes exist at low metallicity?
- Pop III -process Nucleosynthesis and the Elemental Abundances of SMSS J0313-6708 and the Most Iron-Poor Stars
- A high-resolution spectral analysis of three carbon-enhanced metal-poor stars
- The first carbon-enhanced metal-poor star found in the Sculptor dwarf spheroidal
- Detailed Abundances of Two Very Metal-Poor Stars in Dwarf Galaxies
- The formation of the Milky Way halo and its dwarf satellites; a NLTE-1D abundance analysis. II. Early chemical enrichment
- Carbon-enhanced metal-poor stars: a window on AGB nucleosynthesis and binary evolution. I. Detailed analysis of 15 binary stars with known orbital periods
- Non-LTE analysis of K I in late-type stars
- Red Supergiant Stars as Cosmic Abundance Probes. III. NLTE effects in J-band Magnesium lines
- Learning about the intermediate neutron-capture process from lead abundances
- Abundances and kinematics of carbon-enhanced metal-poor stars in the Galactic halo*; A new classification scheme based on Sr and Ba
- Probing the existence of very massive first stars
- Constraints of the physics of low-mass AGB stars from CH and CEMP stars
- Are some CEMP-s stars the daughters of spinstars?
- Carbon and oxygen in metal-poor halo stars
- Zinc in the Sculptor dwarf spheroidal galaxy
- The Most Metal-Poor Stars. V. The CEMP-no Stars in 3D and Non-LTE
- Unusual neutron-capture nucleosynthesis in a carbon-rich Galactic bulge star
- Abundance analysis of a CEMP-no star in the Carina dwarf spheroidal galaxy
- A chemical signature from fast-rotating low-metallicity massive stars: ROA 276 in omega Centauri
Cited by in corpus (14)
- The GALAH Survey: Non-LTE departure coefficients for large spectroscopic surveys
- Horizons: Nuclear Astrophysics in the 2020s and Beyond
- Spectroscopic study of CEMP-(s & r/s) stars- Revisiting classification criteria and formation scenarios, highlighting i-process nucleosynthesis
- Evolution of neutron capture elements in dwarf galaxies
- Tracing Pop III supernovae with extreme energies through the Sculptor dwarf spheroidal galaxy
- Chemical Evolution of R-process Elements in Stars (CERES). I. Stellar parameters and chemical abundances from Na to Zr
- Extreme r-process enhanced stars at high metallicity in Fornax
- A 3D view of dwarf galaxies with Gaia and VLT/FLAMES I. The Sculptor dwarf spheroidal
- The Pristine Inner Galaxy Survey (PIGS) IX. The largest detailed chemical analysis of very metal-poor stars in the Sagittarius dwarf galaxy
- Evidence of Gaia Enceladus experiencing at least two passages around the Milky Way
- Nucleosynthetic yields of intermediate-mass primordial to extremely metal-poor stars
- A wide angle view of the Sagittarius dwarf spheroidal galaxy -- II. A CEMP-r/s star in the Sagittarius dwarf Spheroidal Galaxy
- Neutron-capture elements in a sample of field metal-poor N-rich dwarfs
- The impact of rare events on the chemical enrichment in dwarf galaxies