Solar twins and the Barium puzzle
arXiv:1707.07051 · doi:10.3847/1538-4357/aa81d6
Abstract
Several abundance analyses of Galactic open clusters (OCs) have shown a tendency for Ba but not for other heavy elements (LaSm) to increase sharply with decreasing age such that Ba was claimed to reach [Ba/Fe] in the youngest clusters (ages 100 Myr) rising from [Ba/Fe] dex in solar-age clusters. Within the formulation of the -process, the difficulty to replicate higher Ba abundance and normal LaSm abundances in young clusters is known as {\it the barium puzzle}. Here, we investigate the barium puzzle using extremely high-resolution and high signal-to-noise spectra of 24 solar twins and measured the heavy elements Ba, La, Ce, Nd and Sm with a precision of 0.03 dex. We demonstrate that the enhanced Ba {\scs II} relative to LaSm seen among solar twins, stellar associations and OCs at young ages (100 Myr) is unrelated to aspects of stellar nucleosynthesis but has resulted from overestimation of Ba by standard methods of LTE abundance analysis in which the microturbulence derived from the Fe lines formed deep in the photosphere is insufficient to represent the true line broadening imposed on Ba {\scs II} lines by the upper photospheric layers from where the Ba {\scs II} lines emerge. As the young stars have relatively active photospheres, Ba overabundances most likely result from the adoption of too low a value of microturbulence in the spectum synthesis of the strong Ba {\scs II} lines but the change of microturbulence in the upper photosphere has only a minor affect on LaSm abundances measured from the weak lines.
14 pages,14 figures and 5 tables; accepted for publication in ApJ
References in corpus (16)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Improved Age Estimation for Solar-Type Dwarfs Using Activity-Rotation Diagnostics
- 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
- The Solar Twin Planet Search. I. Fundamental parameters of the stellar sample
- Enhanced production of barium in low-mass stars: evidence from open clusters
- High eccentricity planets from the Anglo-Australian Planet Search
- New insights on Ba over-abundance in open clusters. Evidence for the intermediate neutron-capture process at play?
- High-precision abundances of Sc, Mn, Cu, and Ba in solar twins. Trends of element ratios with stellar age
- The evolution of the Milky Way: New insights from open clusters
- Barium even-to-odd isotope abundance ratios in thick disk and thin disk stars
- Comprehensive abundance analysis of red giants in the open clusters NGC 1342, 1662, 1912, 2354 and 2447
- Shallow extra mixing in solar twins inferred from Be abundances
- Evolution of lithium abundance in the Sun and solar twins
- First determination of s-process element abundances in pre-main sequence clusters: Y, Zr, La, and Ce in IC 2391, the Argus association and IC 2602
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- The Gaia-ESO Survey: Age-chemical-clock relations spatially resolved in the Galactic disc
- The Gaia-ESO Survey: A new approach to chemically characterising young open clusters II. Abundances of the neutron-capture elements Cu, Sr, Y, Zr, Ba, La, and Ce
- OCCASO V. Chemical-abundance trends with Galactocentric distance and age
- Comprehensive abundance analysis of red giants in the open clusters Stock 2, NGC 2168, 6475, 6991 and 7762
- Observing and modelling the young solar analogue EK Draconis: starspot distribution, elemental abundances, and evolutionary status
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