An extremely metal-deficient globular cluster in the Andromeda Galaxy
arXiv:2010.07395 · doi:10.1126/science.abb1970
Abstract
Globular clusters (GCs) are dense, gravitationally bound systems of thousands to millions of stars. They are preferentially associated with the oldest components of galaxies, and measurements of their composition can therefore provide insight into the build-up of the chemical elements in galaxies in the early Universe. We report a massive GC in the Andromeda Galaxy (M31) that is extremely depleted in heavy elements. Its iron abundance is about 800 times lower than that of the Sun, and about three times lower than in the most iron-poor GCs previously known. It is also strongly depleted in magnesium. These measurements challenge the notion of a metallicity floor for GCs and theoretical expectations that massive GCs could not have formed at such low metallicities.
Accepted for publication in Science. For supplementary materials, see under ancillary files
References in corpus (8)
- The Bizarre Chemical Inventory of NGC 2419, An Extreme Outer Halo Globular Cluster
- The outer halo globular cluster system of M31 - I. The final PAndAS catalogue
- Globular Cluster Abundances from High-Resolution Integrated Light Spectra, I: 47 Tuc
- An old, metal-poor globular cluster in Sextans A and the metallicity floor of globular cluster systems
- The tidal remnant of an unusually metal-poor globular cluster
- The minimum metallicity of globular clusters and its physical origin -- implications for the galaxy mass-metallicity relation and observations of proto-globular clusters at high redshift
- Two major accretion epochs in M31 from two distinct populations of globular clusters
- NLTE modelling of integrated light spectra. Abundances of barium, magnesium, and manganese in a metal-poor globular cluster
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