Gaia DR2 orbital properties for field stars with globular cluster-like CN band strengths
arXiv:1904.01021 · doi:10.1051/0004-6361/201935417
Abstract
Large spectroscopic surveys of the Milky Way have revealed that a small population of stars in the halo have light element abundances comparable to those found in globular clusters. The favoured explanation for the peculiar abundances of these stars is that they originated inside a globular cluster and were subsequently lost. Using orbit calculations we assess the likelihood that an existing sample of 57 field stars with globular cluster-like CN band strength originated in any of the currently known Milky Way globular clusters. Using Sloan Digital Sky Survey and Gaia data, we determine orbits and integrals of motion of our sample of field stars, and use these values and metallicity to identify likely matches to globular clusters. The pivot hypothesis is that had these stars been stripped from such objects, they would have remained on very similar orbits. We find that ~ 70% of the sample of field stars have orbital properties consistent with the halo of the Milky Way; however, only 20 stars have likely orbital associations with an existing globular cluster. The remaining ~ 30% of the sample have orbits that place them in the outer Galactic disc. No cluster of similar metallicity is known on analogous disc orbits. The orbital properties of the halo stars seem to be compatible with the globular cluster escapee scenario. The stars in the outer disc are particularly surprising and deserve further investigation to establish their nature.
6 pages, 4 figures. Accepted for publication in A&A Letters
References in corpus (12)
- galpy: A Python Library for Galactic Dynamics
- The mass distribution and gravitational potential of the Milky Way
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. IX. The Atlas of Multiple Stellar Populations
- Detection of a 63 Degree Cold Stellar Stream in the Sloan Digital Sky Survey
- Constraining the Galaxy's dark halo with RAVE stars
- Binarity in Carbon-Enhanced Metal-Poor stars
- The Streams of the Gaping Abyss: A population of entangled stellar streams surrounding the Inner Galaxy
- Atypical Mg-poor Milky Way field stars with globular cluster second-generation like chemical patterns
- First evidence of fully spatially mixed first and second generations in globular clusters: the case of NGC 6362
- NGC 6535: the lowest mass Milky Way globular cluster with a Na-O anti-correlation? Cluster mass and age in the multiple population context
- ESO452-SC11: The lowest mass globular cluster with a potential chemical inhomogeneity
- Near-infrared photometry and spectroscopy of the low Galactic latitude globular cluster 2MASS-GC03
Cited by in corpus (10)
- Evidence from APOGEE for the presence of a major building block of the halo buried in the inner Galaxy
- The contribution of N-rich stars to the Galactic stellar halo using APOGEE red giants
- Purveyors of fine halos. II. Chemodynamical association of halo stars with Milky Way globular clusters
- Discovery of a large population of Nitrogen-Enhanced stars in the Magellanic Clouds
- Formation of N-rich field stars in the high-density building blocks of the Galactic bulge
- An enquiry on the origins of N-rich stars in the inner Galaxy basedon APOGEE chemical compositions
- The in situ origin of the globular cluster NGC 6388 from abundances of Sc, V, and Zn of a large sample of stars
- Homogenous abundances of Mg, Si, Ca, and Ti for about 1500 red giants in 16 globular clusters from FLAMES spectra
- On the connection between nitrogen-enhanced field stars and the Galactic globular clusters
- Purveyors of fine halos III. Chemical abundance analysis of a potential omega Cen associate