The Hubble space telescope UV legacy survey of galactic globular clusters II. The seven stellar populations of NGC 7089 (M2)

A. P. Milone*, A. F. Marino, G. Piotto, L. R. Bedin, J. Anderson, A. Renzini, I. R. King, A. Bellini, T. M. Brown, S. Cassisi, F. D'Antona, H. Jerjen, D. Nardiello, M. Salaris, R. P. van der Marel, E. Vesperini, D. Yong, A. Aparicio, A. Sarajedini, M. Zoccali

*Corresponding author for this work

    Research output: Contribution to journalArticlepeer-review

    114 Citations (Scopus)

    Abstract

    We present high-precision multiband photometry for the globular cluster (GC) M2. We combine the analysis of the photometric data obtained from the Hubble Space Telescope UV Legacy Survey of Galactic GCs GO-13297, with chemical abundances by Yong et al., and compare the photometry with models in order to analyse the multiple stellar sequences we identified in the colour-magnitude diagram.We find three main stellar components, composed of metal-poor, metal-intermediate, and metal-rich stars (hereafter referred to as population A, B, and C, respectively). The components A and B include stars with different s-process element abundances. They host six sub-populations with different light-element abundances, and exhibit an internal variation in helium up to Δ Y ~ 0.07 dex. In contrast with M22, another cluster characterized by the presence of populations with different metallicities, M2 contains a third stellar component, C, which shows neither evidence for sub-populations nor an internal spread in light-elements. Population C does not exhibit the typical photometric signatures that are associated with abundance variations of light elements produced by hydrogen burning at hot temperatures.We compare M2 with other GCs with intrinsic heavy-element variations and conclude that M2 resembles M22, but it includes an additional stellar component that makes it more similar to the central region of the Sagittarius galaxy, which hosts a GC (M54) and the nucleus of the Sagittarius galaxy itself.

    Original languageEnglish
    Pages (from-to)927-938
    Number of pages12
    JournalMonthly Notices of the Royal Astronomical Society
    Volume447
    Issue number1
    DOIs
    Publication statusPublished - 11 Feb 2015

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