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On the star formation efficiencies and evolution of multiple stellar generations in Globular Clusters

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arxiv 1905.10183 v2 pith:QDV4NACP submitted 2019-05-23 astro-ph.GA

On the star formation efficiencies and evolution of multiple stellar generations in Globular Clusters

classification astro-ph.GA
keywords stellargenerationsformationstarclustersconsecutiveevolutionglobular
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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By adopting empirical estimates of the Helium enhancement (Delta Y) between consecutive stellar generations for a sample of Galactic globular clusters (GGC), we uniquely constraint the star formation efficiency of each stellar generation in these stellar systems. In our approach, the star formation efficiency is the central factor that links stellar generations as it defines both their stellar mass and the remaining mass available for further star formation, fixing also the amount of matter required to contaminate the next stellar generation. In this way, the star formation efficiency is here shown to be fully defined by the He enhancement between successive stellar generations in a GC. Our approach has also an impact on the evolution of clusters and thus considers the possible loss of stars through evaporation, tidal interactions and stellar evolution. We focus on the present mass ratio between consecutive stellar generations and the present total mass of Galactic globular clusters. Such considerations suffice to determine the relative proportion of stars of consecutive generations that remain today in globular clusters. The latter is also shown to directly depend on the values of Delta Y and thus the He enhancement between consecutive stellar generations in GGC places major constraints on models of star formation and evolution of GC.

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