Properties of stellar generations in Globular Clusters and relations with global parameters
Eugenio Carretta (1), Angela Bragaglia (1), Raffaele Gratton (2),, Alejandra Recio-Blanco (3), Sara Lucatello (2,4), Valentina D'Orazi (2),, Santi Cassisi (5) ((1) INAF-Oss.Astr.Bologna, (2) INAF-Oss.Astr.Padova, (3), Obs. de la Cote d'Azur, (4) Excellence Cluster Universe, (5)

TL;DR
This study analyzes the chemical compositions and global parameters of Galactic globular clusters, proposing a three-phase formation scenario and identifying key factors influencing their properties and evolution.
Contribution
It introduces a detailed chemical and kinematic classification of GCs, and proposes a comprehensive formation model involving precursor populations and multiple star formation phases.
Findings
LF of GCs is formation-imprinted and marginally evolved.
Primordial populations likely lost in many GCs.
Chemical signatures mainly depend on [Fe/H], mass, and age.
Abstract
ABRIDGED) We revise the formation of Galactic GCs by adding the detailed chemical composition of their different stellar generations (from 1200 giants in 19 GCs) to their global parameters. We propose to identify as GCs those showing the Na-O anticorrelation, and we classify the GCs according to kinematics and location in the Galaxy in disk/bulge, inner, and outer halo. We find that the LF of GCs is fairly independent of their population, suggesting that it is imprinted by the formation mechanism, and only marginally affected by the ensuing evolution. We show that a large fraction of the primordial population should have been lost by the proto-GCs. The extremely low Al abundances found for the primordial population of massive GCs indicate a very fast enrichment process before the formation of the primordial population. We suggest a scenario for the formation of GCs including at least 3…
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