Helium variation due to self–pollution among Globular Cluster stars: Consequences on the horizontal branch morphology
نویسندگان
چکیده
It is becoming clear that ‘self–pollution’ by the ejecta of massive asymptotic giant branch stars has an important role in the early chemical evolution of globular cluster stars, producing CNO abundance spreads which are observed also at the surface of unevolved stars. Observing that the ejecta which are CNO processed must also be helium enriched, we have modelled stellar evolution of globular cluster stars by taking into account this possible helium enhancement with respect to the primordial value. We show that the differences between the main evolutionary phases (main sequence, turn–off and red giants) are small enough that it would be very difficult to detect them observationally. However, the difference in the evolving mass may play a role in the morphology of the horizontal branch, and in particular in the formation of blue tails, in those globular clusters which show strong CNO abundance variations, such as M13 and NGC 6752.
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ar X iv : a st ro - p h / 99 03 43 7 v 1 2 9 M ar 1 99 9 Striking Photospheric Abundance Anomalies in Blue Horizontal - Branch Stars in Globular Cluster
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متن کاملar X iv : a st ro - p h / 04 05 01 6 v 1 3 M ay 2 00 4 The early evolution of Globular Clusters : the case of NGC 2808
Enhancement and spread of helium among globular cluster stars have been recently suggested as a way to explain the horizontal branch blue tails, in those clusters which show a primordial spread in the abundances of CNO and other elements involved in advanced CNO burning. Helium enhancement is unavoidable, if the matter responsible for the abundance spreads is identified with the matter lost by ...
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متن کاملX iv : a st ro - p h / 04 05 01 6 v 1 3 M ay 2 00 4 The early evolution of Globular Clusters : the case of NGC 2808
Enhancement and spread of helium among globular cluster stars have been recently suggested as a way to explain the horizontal branch blue tails, in those clusters which show a primordial spread in the abundances of CNO and other elements involved in advanced CNO burning. Helium enhancement is unavoidable, if the matter responsible for the abundance spreads is identified with the matter lost by ...
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