Intrinsic Metallicity Variation in the Intermediate Mass Type II Globular Cluster NGC 1261
arXiv:2106.15052 · doi:10.1093/mnras/stab1891
Abstract
Globular Clusters (GCs) are now well known to almost universally show multiple popu-lations (MPs). The HST UV Legacy Survey of a large number of Galactic GCs in UV filters optimized to explore MPs finds that a small fraction of GCs, termed Type II, also display more complex, anomalous behavior. Several well-studied Type II GCs show intrinsic Fe abundance variations, suggesting that the other, less well-studied, Type II GCs should also exhibit similar behavior. Our aim is to perform the first detailed metallicity analysis of NGC 1261, an intermediate mass Type II GC, in order to determine if this object shows an intrinsic Fe variation. We determined the Fe abundance in eight red giant members using Magellan-MIKE and UVES-FLAMES high-resolution, high S/N spectroscopy. The full range of [Fe/H] for the entire sample from the spectra is from -1.05 to -1.43 dexwith an observed spread sigma_obs=0.133 dex. Compared with the total internal error of Sigma_tot=0.06,this indicates a significant intrinsic metallicity spread of Sigma_int=0.119 dex. We found a very similar variation in [Fe/H] using an independent method to derive the atmospheric parameters based on near-IR photometry. More importantly, the mean metallicity of the five presumed normal metallicity stars is -1.37+/-0.02, while that of the three presumed anomalous/highmetallicity stars is -1.18+/-0.09. This difference is significant at the 2.4Sigma level. We find indications from existing data of other Type II GCs that several of them presumedto have real metallicity spreads may in fact posses none. The minimum mass required for a GC to acquire an intrinsic Fe spread appears to be 10^5 Msun. We find no strong correlation betwee nmass and metallicity variation for Type II GCs. The metallicity spread is also independent of the fraction of anomalous stars within the Type II GCs and of GC origin.
12 pages, 7 figures. Accepted for publication in MNRAS
References in corpus (18)
- The Dartmouth Stellar Evolution Database
- Fast rotating massive stars and the origin of the abundance patterns in galactic globular clusters
- Formation and Dynamical Evolution of Multiple Stellar Generations in Globular Clusters
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. I. Overview of the Project and Detection of Multiple Stellar Populations
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. IX. The Atlas of Multiple Stellar Populations
- Spectroscopic and Photometric evidence of two stellar populations in the Galactic Globular Cluster NGC6121 (M4)
- The nucleus of the Sagittarius dSph galaxy and M54: a window on the process of galaxy nucleation
- Iron and s-elements abundance variations in NGC5286: comparison with anomalous globular clusters and Milky Way satellites
- Ceci n'est pas a globular cluster: the metallicity distribution of the stellar system Terzan 5
- The metallicity spread and the age-metallicity relation of Omega Centauri
- A new class of fossil fragments from the hierarchical assembly of the Galactic bulge
- The origin of the spurious iron spread in the globular cluster NGC 3201
- A kinematic view of NGC 1261: structural parameters, internal dispersion, absolute proper motion and Blue Straggler Stars
- Uncovering Multiple Populations with Washington Photometry: I. The Globular Cluster NGC 1851
- Chemical Study of the Metal-rich Globular Cluster NGC 5927
- The vertical Na-O relation in the bulge globular cluster NGC 6553
- The Gaia-ESO Survey: an extremely Li-rich giant in the globular cluster NGC 1261
- Variability in NGC 3201 giant stars and its impact on their spectroscopic [Fe/H] determination