Dynamical Origin for the Collinder 132-Gulliver 21 Stream: A Mixture of three Co-Moving Populations with an Age Difference of 250 Myr
arXiv:2208.14456 · doi:10.3847/2041-8213/ac8e68
Abstract
We use Gaia DR3 data to study the Collinder 132-Gulliver 21 region via the machine learning algorithm StarGO, and find eight subgroups of stars (ASCC 32, Collinder 132 gp 1--6, Gulliver 21) located in close proximity. Three co-moving populations were identified among these eight subgroups: (i) a coeval 25 Myr-old moving group (Collinder 132); (ii) an intermediate-age (50--100 Myr) group; and (iii) the 275 Myr-old dissolving cluster Gulliver 21. These three populations form parallel diagonal stripe-shape over-densities in the U--V distribution, which differ from open clusters and stellar groups in the solar neighborhood. We name this kinematic structure the Collinder 132-Gulliver 21 stream, as it extends over 270 pc in the 3D space. The oldest population Gulliver21 is spatially surrounded by the Collinder 132 moving group and the intermediate-age group. Stars in the Collinder 132-Gulliver 21 stream have an age difference up to 250 Myr. Metallicity information shows a variation of 0.3 dex between the youngest and oldest populations. The formation of the Collinder132-Gulliver 21 stream involves both star formation and dynamical heating. The youngest population (Collinder 132 moving group) with homogeneous metallicity is probably formed through filamentary star formation. The intermediate-age and the oldest population were then scatted by the Galactic bar or spiral structure resonance to intercept Collinder 132's orbit. Without mutual interaction between each population, the three populations are flying by each other currently and will become distinct three groups again in approximately ~50Myr.
Accepted to ApJL, 15 pages, 7 figures
References in corpus (31)
- Gaia Data Release 3: Summary of the content and survey properties
- galpy: A Python Library for Galactic Dynamics
- Trigonometric Parallaxes Of High-Mass Star Forming Regions: Our View Of The Milky Way
- Painting a portrait of the Galactic disc with its stellar clusters
- A comprehensive set of simulations studying the influence of gas expulsion on star cluster evolution
- Gaia Data Release 3 Properties and validation of the radial velocities
- A catalog of newly identified star clusters in GAIA DR2
- Gaia Data Release 3: Analysis of the Gaia BP/RP spectra using the General Stellar Parameterizer from Photometry
- Disentangling the Hercules stream
- Origin and evolution of moving groups I. Characterization in the observational kinematic-age-metallicity space
- A Low-Mass Stellar-Debris Stream Associated with a Globular Cluster Pair in the Halo
- Discovery of Tidal Tails in Disrupting Open Clusters: Coma Berenices and a Neighbor Stellar Group
- On the Mass of Dense Star Clusters in Starburst Galaxies from Spectro-Photometry
- A large catalogue of molecular clouds with accurate distances within 4 kpc of the Galactic disk
- The extended halo of NGC 2682 (M 67) from Gaia DR2
- 3D Morphology of Open Clusters in the Solar Neighborhood with Gaia EDR3 II: Hierarchical Star Formation Revealed by Spatial and Kinematic Substructures
- A Catalog of Moving Group Candidates in The Solar Neighborhood
- A Number of Nearby Moving Groups may be Fragments of Dissolving Open Clusters
- Uncovering a 260 pc wide, 35 Myr old filamentary relic of star formation
- A Gaia early DR3 mock stellar catalog: Galactic prior and selection function
- Different Fates of Young Star Clusters After Gas Expulsion
- The Stellar Distribution Function and Local Vertical Potential from Gaia DR2
- Gyrochronological dating of the stellar moving group Group X
- Stellar chromospheric activity and age relation from open clusters in the LAMOST Survey
- Exploring the origin of moving groups and diagonal ridges by simulations of stellar orbits and birthplaces
- Kinematic structures of the Solar neighbourhood revealed by Gaia DR1/TGAS and RAVE
- A tale of caution: the tails of NGC 752 are much longer than claimed
- The impact of massive stars and black holes on the fate of open star clusters and their tidal streams
- Molecular Lines of 13 Galactic Infrared Bubble Regions
- The HR 1614 moving group is not a dissolving cluster
- Low-mass members of nearby young stellar moving groups from Gaia EDR3