Lithium abundance in the globular cluster M4: from the Turn-Off to the RGB Bump
A. Mucciarelli (1), M. Salaris (2), L. Lovisi (1), F. R. Ferraro (1),, L. Lanzoni (1), S. Lucatello (3), R. G. Gratton (3) ((1) Astronomy, Department, Bologna University, Italy (2) Astrophysics Research Institute,, Liverpool John Moores University, UK

TL;DR
This study measures lithium and iron abundances in 87 stars of the globular cluster M4, revealing uniform lithium levels in turn-off stars and challenging existing stellar models with atomic diffusion, highlighting the need for additional turbulent mixing.
Contribution
It provides new high-resolution spectroscopic data on Li and Fe in M4, constrains stellar models with turbulence, and discusses implications for the cosmological lithium problem.
Findings
Li abundance in TO stars is uniform at A(Li)=2.30 dex
Fe content is [Fe/H]=-1.10 dex with no systematic offsets
Models with atomic diffusion alone are incompatible with observations
Abstract
We present Li and Fe abundances for 87 stars in the GC M4,obtained with GIRAFFE high-resolution spectra. The targets range from the TO up to the RGB Bump. The Li abundance in the TO stars is uniform, with an average value A(Li)=2.30+-0.02 dex,consistent with the upper envelope of Li content measured in other GCs and in the Halo stars,confirming also for M4 the discrepancy with the primordial Li abundance predicted by WMAP+BBNS. The iron content of M4 is [Fe/H]=-1.10+-0.01 dex, with no systematic offsets between dwarf and giant stars.The behaviour of the Li and Fe abundance along the entire evolutionary path is incompatible with models with atomic diffusion, pointing out that an additional turbulent mixing below the convective region needs to be taken into account,able to inhibit the atomic diffusion.The measured A(Li) and its homogeneity in the TO stars allow to put strong constraints…
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