High-precision abundances of Sc, Mn, Cu, and Ba in solar twins. Trends of element ratios with stellar age
arXiv:1606.08399 · doi:10.1051/0004-6361/201628888
Abstract
A previous study of correlations between element abundance ratios, [X/Fe], and ages of solar twin stars is extended to include Sc, Mn, Cu, and Ba. HARPS spectra with S/N > 600 are used to derive very precise (+/- 0.01 dex) differential abundances, and stellar ages with internal errors less than 1 Gyr are obtained by interpolation in the logg - Teff diagram between isochrones calculated with the Aarhus Stellar Evolution Code. For stars younger than 6 Gyr, [X/Fe] is tightly correlated with stellar age for all elements. For ages between 6 and 9 Gyr, the [X/Fe] - age correlations break down and the stars split up into two groups having respectively high and low [X/Fe] for the odd-Z elements. It is concluded that while stars in the solar neighborhood younger than about 6 Gyr were formed from interstellar gas with a smooth chemical evolution, older stars have originated from regions enriched by supernovae with different neutron excesses. Furthermore, the correlations between abundance ratios and stellar age suggest that: i) Sc is made in Type II supernovae along with the alpha-capture elements, ii) the Type II to Ia SNe yield ratio is about the same for Mn and Fe, iii) Cu is mainly made by the weak s-process in massive stars, iv) the Ba/Y yield ratio for AGB stars increases with decreasing stellar mass, v) [Y/Mg] and [Y/Al] can be used as "chemical clocks" when determining ages of solar metallicity stars.
12 pages, 9 figures. Accepted for publication in A&A
References in corpus (22)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Galactic chemical evolution: Carbon through Zinc
- Spectroscopic parameters for 451 stars in the HARPS GTO planet search program. Stellar [Fe/H] and the frequency of exo-Neptunes
- ASTEC -- the Aarhus STellar Evolution Code
- High-precision abundances of elements in solar twin stars: Trends with stellar age and elemental condensation temperature
- NLTE abundances of Mn in a sample of metal-poor stars
- The Solar Twin Planet Search. I. Fundamental parameters of the stellar sample
- The origin and evolution of the odd-Z iron-peak elements Sc, V, Mn, and Co in the Milky Way stellar disk
- Enhanced production of barium in low-mass stars: evidence from open clusters
- On the origin of stars with and without planets. Tc trends and clues to Galactic evolution
- New insights on Ba over-abundance in open clusters. Evidence for the intermediate neutron-capture process at play?
- High precision abundances in the 16 Cyg binary system: a signature of the rocky core in the giant planet
- The chemical evolution of Manganese in different stellar systems
- Abundance Differences Between Exoplanet Binary Host Stars XO-2N and XO-2S -- Dependence on Stellar Parameters
- NLTE study of scandium in the Sun
- Manganese trends in a sample of thin and thick disk stars. The origin of Mn
- Searching for signatures of planet formation in stars with circumstellar debris discs
- What are little worlds made of? Stellar abundances and the building blocks of planets
- Zirconium, Barium, Lanthanum and Europium Abundances in Open Clusters
- Contrasting copper evolution in Omega Centauri and the Milky Way
- Non-LTE analysis of neutral copper in the late-type metal-poor stars
- nu-Process Nucleosynthesis in Population III Core-Collapse Supernovae
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- Abundance to age ratios in the HARPS-GTO sample with Gaia DR2: Chemical clocks for a range of [Fe/H]
- High-precision abundances of elements in solar-type stars. Evidence of two distinct sequences in abundance-age relations
- The GALAH Survey: Non-LTE departure coefficients for large spectroscopic surveys
- On the metallicity dependance of the [Y/Mg] - age relation for solar type stars
- High-precision abundances of elements in Kepler LEGACY stars. Verification of trends with stellar age
- Chemical (in)homogeneity and atomic diffusion in the open cluster M67
- Spectroscopic age estimates for APOGEE red-giant stars: Precise spatial and kinematic trends with age in the Galactic disc
- How magnetic activity alters what we learn from stellar spectra
- The Gaia-ESO Survey: Age-chemical-clock relations spatially resolved in the Galactic disc
- A Catalog of Stellar Unified Properties (CATSUP) for 951 FGK-Stars Within 30 pc
- Cosmic phylogeny: reconstructing the chemical history of the solar neighbourhood with an evolutionary tree
- Detailed chemical compositions of planet hosting stars: I. Exploration of possible planet signatures
- Abundances of neutron-capture elements in thin- and thick-disc stars in the solar neighbourhood
- Solar twins and the Barium puzzle
- The GALAH Survey: Chemical Clocks
- The [Y/Mg] clock works for evolved solar metallicity stars
- Orbital and spectral characterization of the benchmark T-type brown dwarf HD 19467B
- The CARMENES search for exoplanets around M dwarfs: Rubidium abundances in nearby cool stars
- Star Formation Timescales of the Halo Populations from Asteroseismology and Chemical Abundances
- MCMCI: A code to fully characterise an exoplanetary system
- The relationship between age, metallicity, and abundances for disk stars in a simulated Milky Way galaxy
- Testing abundance-age relations beyond solar analogues with Kepler LEGACY stars
- The chemical composition of the stellar cluster Gaia1: no surprise behind Sirius
- The [Y/Mg] chemical clock in the Galactic Disk: The influence of metallicity and Galactic population in the solar neighbourhood
- Stellar dating using chemical clocks and Bayesian inference
- Is [Y/Mg] a Reliable Age Diagnostic for FGK Stars?
- Survey for Distant Solar Twins (SDST) -- I. EPIC method for stellar parameter measurement
- Explosive nucleosynthesis of a metal-deficient star as the source of a distinct odd-even effect in the solar twin HIP 11915
- Using heritability of stellar chemistry to reveal the history of the Milky Way
- Traits for chemical evolution in solar twins: Trends of neutron-capture elements with stellar age
- Exploring the dependence of chemical traits on metallicity: chemical trends for red giant stars with asteroseismic ages
- On the validity of the spectroscopic age indicators [Y/Mg], [Y/Al], [Y/Si], [Y/Ca], and [Y/Ti] for giant stars
- The solar abundance problem and eMSTOs in clusters
- Modeling of two CoRoT solar analogues constrained by seismic and spectroscopic analysis
- New stellar age estimates using SPInS based on Gaia DR3 photometry and LAMOST DR8 abundances
- Gemini-GRACES high-quality spectra of Kepler evolved stars with transiting planets I. Detailed characterization of multi-planet systems Kepler-278 and Kepler-391
- Planets Around Solar Twins/Analogs (PASTA) II: chemical abundances, systematic offsets, and clues to planet formation
- Assessing stellar yields in Galaxy chemical evolution: observational stellar abundance patterns
- Survey for Distant Solar Twins (SDST) -- III. Identification of new solar twin and solar analogue stars
- MAISTEP -- a new grid-based machine learning tool for inferring stellar parameters I. Ages of giant-planet host stars
- Inferring Galactic Parameters from Chemical Abundances: A Multi-Star Approach
- The Missing Link: Testing Galactic Chemical Evolution Models with the First Multi-Isotopic Abundances in Solar Twin Stars
- Solar twins in Gaia DR3 GSP-Spec I. Building a large catalog of Solar twins with ages
- Calibration of the [C/N] and [Y/Mg] chemical clocks with asteroseismic ages from the TESS space mission
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- Comprehensive calculations of energy levels, radiative transition parameters, hyperfine structure constants A-B, Landé g factors and isotope shifts for Sc XX