Double Horizontal Branches in NGC 6440 and NGC 6569 unveiled by the VVV Survey
arXiv:1211.3437 · doi:10.1088/2041-8205/761/2/L29
Abstract
We report the discovery of a peculiar horizontal branch (HB) in NGC 6440 and NGC 6569, two massive and metal-rich Galactic globular clusters (GGCs) located in the Galactic bulge, within 4 kpc from the Galactic Center. In both clusters, two distinct clumps are detected at the level of the cluster HB, separated by only ~ 0.1 magnitudes in the Ks band. They were detected with IR photometric data collected with the "VISTA Variables in the Via Lactea" (VVV) Survey, and confirmed in independent IR catalogs available in the literature, and HST optical photometry. Our analysis demonstrates that these clumps are real cluster features, not a product of field contamination or interstellar reddening. The observed split HBs could be a signature of two stellar sub-populations with different chemical composition and/or age, as recently found in Terzan 5, but it cannot be excluded that they are caused by evolutionary effects, in particular for NGC 6440. This interpretation, however, requires an anomalously high helium content (Y > 0.30). Our discovery suggests that such a peculiar HB morphology could be a common feature of massive, metal-rich bulge GGCs.
Accepted by Astrophysical Journal Letter
References in corpus (6)
- An abundance analysis of bright giants in the globular cluster NGC 1851
- NGC 6441: another indication for a very high helium content in Globular Cluster stars
- The Peculiar Horizontal Branch Morphology of the Galactic Globular Clusters NGC 6388 and NGC 6441: new insights from UV observations
- High resolution infrared spectra of NGC 6440 and NGC 6441: two massive Bulge Globular Clusters
- Massive open star clusters using the VVV survey I. Presentation of the data and description of the approach
- Observations of the Hot Horizontal-Branch Stars in the Metal-Rich Bulge Globular Cluster NGC 6388 - Indications of Helium Enrichment and a Lesson in Crowded Field Spectroscopy
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