Ongoing hierarchical massive cluster assembly: the LISCA II structure in the Perseus complex
arXiv:2303.15501 · doi:10.1051/0004-6361/202346095
Abstract
We report on the identification of a massive ( M) sub-structured stellar system in the Galactic Perseus complex likely undergoing hierarchical cluster assembly. Such a system comprises nine star clusters (including the well-known clusters NGC 654 and NGC 663) and an extended and low-density stellar halo. Gaia-DR3 and available spectroscopic data show that all its components are physically consistent in the 6D phase-space (position, parallax, and 3D motion), homogeneous in age (14 44 Myr), and chemical content (half-solar metallicity). In addition, the system's global stellar density distribution is that of typical star clusters and shows clear evidence of mass segregation. We find that the hierarchical structure is mostly contracting towards the center with a speed of up to km s, while the innermost regions expand at a lower rate (about km s) and are dominated by random motions. Interestingly, this pattern is dominated by the kinematics of massive stars, while low-mass stars ( M) are characterized by contraction across the entire cluster. Finally, the nine star clusters in the system are all characterized by a relatively flat velocity dispersion profile possibly resulting from ongoing interactions and tidal heating. We show that the observational results are generally consistent with those found in -body simulations following the cluster violent relaxation phase strongly suggesting that the system is a massive cluster in the early assembly stages. This is the second structure with these properties identified in our Galaxy and, following the nomenclature of our previous work, we named it LISCA II.
21 pages, 24 figures, 1 table; accepted for publication in A&A
References in corpus (34)
- Cosmic Star Formation History
- Theory of Star Formation
- Painting a portrait of the Galactic disc with its stellar clusters
- Clusters and mirages: cataloguing stellar aggregates in the Milky Way
- Star cluster disruption by giant molecular clouds
- Merging black holes in young star clusters
- What is a globular cluster? An observational perspective
- Dynamical mass segregation on a very short timescale
- A stellar census in globular clusters with MUSE: The contribution of rotation to cluster dynamics studied with 200 000 stars
- Probing the role of the galactic environment in the formation of stellar clusters; using M83 as a test bench
- 3D kinematics and age distribution of the Open Cluster population
- The secrets of the nearest starburst cluster: II. The present-day mass function in NGC 3603
- Improving the open cluster census. I. Comparison of clustering algorithms applied to Gaia DR2 data
- The GALAH survey: tracing the Galactic disk with Open Clusters
- Timing the Early Assembly of the Milky Way with the H3 Survey
- Extended stellar systems in the solar neighborhood - II. Discovery of a nearby 120° stellar stream in Gaia DR2
- The formation of NGC 3603 young starburst cluster: "prompt" hierarchical assembly or monolithic starburst?
- Dynamics versus structure: breaking the density degeneracy in star formation
- A perfect starburst cluster made in one go: the NGC 3603 young cluster
- The Formation of a Stellar Association in the NGC 7000/IC 5070 Complex: Results from Kinematic Analysis of Stars and Gas
- Extended main-sequence turnoffs in the double cluster and Persei: The complex role of stellar rotation
- Gaia Stellar Kinematics in the Head of the Orion A Cloud: Runaway Stellar Groups and Gravitational Infall
- A kinematic view of NGC 1261: structural parameters, internal dispersion, absolute proper motion and Blue Straggler Stars
- Completeness of the Gaia-verse IV: The Astrometry Spread Function of Gaia DR2
- First phase space portrait of a hierarchical stellar structure in the Milky Way
- The dynamical origin of multiple populations in intermediate-age clusters in the Magellanic Clouds
- From hydrodynamics to N-body simulations of star clusters: mergers and rotation
- Early dynamical evolution of rotating star clusters in a tidal field
- Stellar age spreads in clusters as imprints of cluster-parent clump densities
- The origin of a distributed stellar population in the star-forming region W4
- The young massive star cluster Westerlund 2 observed with MUSE. III. A cluster in motion -- the complex internal dynamics
- Mass Segregation in the Hyades Cluster
- Early dynamics and violent relaxation of multi-mass rotating star clusters
- Stellar population astrophysics (SPA) with the TNG -- The chemical content of the red supergiant population in the Perseus complex