The chemical composition of red giants in 47 Tucanae. II. Magnesium isotopes and pollution scenarios
A. O. Thygesen, L. Sbordone, H.-G. Ludwig, P. Ventura, D. Yong, R., Collet, N. Christlieb, J. Melendez, S. Zaggia

TL;DR
This study investigates magnesium isotopic ratios in 13 red giants of 47 Tucanae, revealing no significant differences between populations and highlighting the impact of 3D atmospheric models on isotopic ratio derivations.
Contribution
It provides new magnesium isotopic measurements in 47 Tucanae and assesses the effects of 3D stellar atmosphere models on these ratios, advancing understanding of globular cluster pollution mechanisms.
Findings
No significant isotopic differences between stellar populations.
3D models increase 25Mg/24Mg ratio estimates by up to 2.5 times.
No evidence of strong Mg-Al burning chain activation.
Abstract
The phenomenon of multiple populations in globular clusters is still far from understood, with several proposed mechanisms to explain the observed behaviour. The study of elemental and isotopic abundance patterns are crucial for investigating the differences among candidate pollution mechanisms. We derive magnesium isotopic ratios for 13 stars in the globular cluster 47 Tucanae (NGC 104) to provide new, detailed information about the nucleosynthesis that has occurred within the cluster. For the first time, the impact of 3D model stellar atmospheres on the derived Mg isotopic ratios is investigated. Using both tailored 1D atmospheric models and 3D hydrodynamical models, we derive magnesium isotopic ratios from four features of MgH near 5135{\AA} in 13 giants near the tip of the RGB, using high signal-to-noise, high-resolution spectra. We derive the magnesium isotopic ratios for all stars…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomical and nuclear sciences · History and Developments in Astronomy
