On the physical nature of globular cluster candidates in the Milky Way bulge
arXiv:1803.07936 · doi:10.1093/mnras/sty773
Abstract
We present results from 2MASS JKs photometry on the physical reality of recently reported globular cluster (GC) candidates in the Milky Way (MW) bulge. We relied our analysis on photometric membership probabilities that allowed us to distinguish real stellar aggregates from the composite field star population. When building colour-magnitude diagrams and stellar density maps for stars at different membership probability levels, the genuine GC candidate populations are clearly highlighted. We then used the tip of the red giant branch (RGB) as distance estimator, resulting heliocentric distances that place many of the objects in regions near of the MW bulge where no GC had been previously recognised. Some few GC candidates resulted to be MW halo/disc objects.Metallicities estimated from the standard RGB method are in agreement with the values expected according to the position of the GC candidates in the Galaxy. We finally derived from the first time their structural parameters. We found that the studied objects have core, half-light and tidal radii in the ranges spanned by the population of known MW GCs. Their internal dynamical evolutionary stages will be described properly when their masses are estimated.
11 pages, 7 figures. Accepted for publication in Monthly Notices of the Royal Astronomical Society
References in corpus (15)
- A systematic survey for infrared star clusters with |b|<20deg using 2MASS
- The brightness of the Red Giant Branch tip: Theoretical framework, a set of reference models, and predicted observables
- Variable stars in the VVV globular clusters. I. 2MASS-GC02 and Terzan10
- The Near-Infrared Tip of the Red Giant Branch. II. An Absolute Calibration in the Large Magellanic Cloud
- The Near-Infrared Tip of the Red Giant Branch. I. A Calibration in the Isolated Dwarf Galaxy IC 1613
- Models for the 3-D axisymmetric gravitational potential of the Milky Way Galaxy - A detailed modelling of the Galactic disk
- FSR1767 - a new globular cluster in the Galaxy
- Star cluster formation history along the minor axis of the Large Magellanic Cloud
- Clustering of Local Group distances: publication bias or correlated measurements? V. Galactic rotation constants
- Observational hints of a real age spread in the young LMC star cluster NGC 1971
- FSR584 - a new globular cluster in the Galaxy?
- Detection of a diffuse extended halo-like structure around 47 Tuc
- On the extended stellar structure around NGC 288
- G2C2-III: Structural parameters for Galactic globular clusters in SDSS passbands
- A Probable New Globular Cluster in the Galactic Disk
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