The Dynamics, Structure, and Fate of a Young Cluster During Gas Dispersal: Hectoschelle, Chandra, Spitzer, and Gaia Observations of CepOB3b
arXiv:1811.04505 · doi:10.3847/1538-4357/aaf4c1
Abstract
We present a study of the kinematics and structure of the Cep OB3b cluster based on new spectra obtained with the Hectoschelle spectrograph on the MMT and data from Spitzer, Chandr}, and Gaia. At a distance of 819+/-16 pc, Cep OB3b is one of the closest examples of a young (~3 - 5 Myr), large (~3000 total members) cluster at the late stages of gas dispersal. The cluster is broken into two sub-clusters surrounded by a lower density halo. We fit the empirical density law of King (1962) to each sub-cluster to constrain their sizes and structure. The richer eastern sub-cluster has circular symmetry, a modest central density, and lacks molecular gas toward its core suggesting it has undergone expansion due to gas dispersal. In contrast, the western sub-cluster deviates from circular symmetry, has a smaller core size, and contains significant molecular gas near its core, suggesting that it is in an earlier phase of gas dispersal. We present posterior probability distributions for the velocity dispersions from the Hectoschelle spectra. The east will continue to expand and likely form a bound cluster with ~35% of stars remaining. The west is undergoing slower gas dispersal and will potentially form a bound cluster with ~75% of stars remaining. If the halo dissipates, this will leave two independent clusters with ~300 members; proper motions suggest that the two sub-clusters are not bound to each other.
44 pages, 15 figures, 9 tables, accepted in ApJ
References in corpus (16)
- Gaia Data Release 2: The astrometric solution
- A Spitzer Survey of Young Stellar Clusters within One Kiloparsec of the Sun: Cluster Core Extraction and Basic Structural Analysis
- A comprehensive set of simulations studying the influence of gas expulsion on star cluster evolution
- Kinematic and Spatial Substructure in NGC 2264
- The Spatial Structure of Young Stellar Clusters. I. Subclusters
- Kinematic Structure of the Orion Nebula Cluster and its Surroundings
- IN-SYNC II: Virial Stars from Sub-Virial Cores -- The Velocity Dispersion of Embedded Pre-Main-Sequence Stars in NGC 1333
- Empirical isochrones and relative ages for young stars, and the radiative-convective gap
- Kinematic structure in the young Sigma Orionis association
- The Structure, Dynamics and Star Formation Rate of the Orion Nebula Cluster
- Impact of a star formation efficiency profile on the evolution of open clusters
- Protoplanetary Disk Evolution around the Triggered Star Forming Region Cepheus B
- A Spitzer View of Mon OB1 East/NGC 2264
- Gas expulsion in highly substructured embedded star clusters
- The difficult early stages of embedded star clusters and the importance of the pre-gas expulsion virial ratio
- Kinematics of the Optically Visible YSOs Toward the Orion B Molecular Cloud
Cited by in corpus (16)
- The Physics of Star Cluster Formation and Evolution
- Expanding associations in the Vela-Puppis region: 3D structure and kinematics of the young population
- 3D Morphology of Open Clusters in the Solar Neighborhood with Gaia EDR3: its Relation to Cluster Dynamics
- Modelling of the Effects of Stellar Feedback during Star Cluster Formation Using a Hybrid Gas and N-Body Method
- Different Fates of Young Star Clusters After Gas Expulsion
- The 3-D Kinematics of the Orion Nebula Cluster: NIRSPEC-AO Radial Velocities of the Core Population
- A tale of two clusters: dynamical history determines disc survival in Tr14 and Tr16 in the Carina Nebula
- Low Mass Stars as Tracers of Star and Cluster Formation
- Membership analysis and 3D kinematics of the star-forming complex around Trumpler 37 using Gaia-DR3
- Mass ejection and time variability in protostellar outflows: Cep E. SOLIS XVI
- Modelling the early mass-ejection in jet driven protostellar outflows. Lessons from Cep E
- The 3D Kinematics of the Orion Nebula Cluster II: Mass-dependent Kinematics of the Inner Cluster
- The SOFIA Massive (SOMA) Star Formation Q-band follow-up I. Carbon-chain chemistry of intermediate-mass protostars
- Collision of Two Stellar Associations in the Nearby Gum Nebula
- Warps survive beyond fly-by encounters in protoplanetary disks. RW Aur A as a case study
- S2D2: Small-scale Significant substructure DBSCAN Detection II. Tracing episodes and gradients of star formation activity