The spin, expansion and contraction of open star clusters
arXiv:2404.05327 · doi:10.1051/0004-6361/202349115
Abstract
Empirical constraints on the internal dynamics of open clusters are important for understanding their evolution and evaporation. High precision astrometry from Gaia DR3 are thus useful to observe aspects of the cluster dynamics. This work aims to identify dynamically peculiar clusters such as spinning and expanding clusters. We also quantify the spin frequency and expansion rate and compare them with -body models to identify the origins of the peculiarities. We used the latest Gaia DR3 and archival spectroscopic surveys to analyse the radial velocities and proper motions of the cluster members in 1379 open clusters. A systematic analysis of synthetic clusters is performed to demonstrate the observability of the cluster spin along with effects of observational uncertainties. -body simulations were used to understand the evolution of cluster spin and expansion for initially non-rotating clusters. We identified spin signatures in 10 clusters (and 16 candidates). Additionally, we detected expansion in 18 clusters and contraction in 3 clusters. The expansion rate is compatible with previous theoretical estimates based on expulsion of residual gas. The orientation of the spin axis is independent of the orbital angular momentum. The spin frequencies are much larger than what is expected from simulated initially non-rotating clusters. This indicates that >1% of the clusters are born rotating and/or they have undergone strong interactions. Higher precision observations are required to increase the sample of such dynamically peculiar clusters and to characterise them.
12 figures, 5 tables. Accepted for publication in Astronomy & Astrophysics
References in corpus (27)
- The Gaia mission
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- Gaia Data Release 3: Summary of the content and survey properties
- Estimating distances from parallaxes. V: Geometric and photogeometric distances to 1.47 billion stars in Gaia Early Data Release 3
- galpy: A Python Library for Galactic Dynamics
- The Effect of Pair-Instability Mass Loss on Black Hole Mergers
- Improving the open cluster census. II. An all-sky cluster catalogue with Gaia DR3
- A stellar census in globular clusters with MUSE: The contribution of rotation to cluster dynamics studied with 200 000 stars
- PeTar: a high-performance N-body code for modeling massive collisional stellar systems
- The eye of Gaia on globular clusters kinematics: internal rotation
- Phantom of RAMSES (POR): A new Milgromian dynamics N-body code
- Hubble Space Telescope Proper Motion (HSTPROMO) Catalogs of Galactic Globular Clusters. V. The rapid rotation of 47 Tuc traced and modeled in three dimensions
- Survey of Surveys I: The largest catalogue of radial velocities for the Galaxy
- Blue Straggler Stars in Open Clusters using Gaia: Dependence on Cluster Parameters and Possible Formation Pathways
- The construction of non-spherical models of quasi-relaxed stellar systems
- Asymmetrical tidal tails of open star clusters: stars crossing their cluster's prah challenge Newtonian gravitation
- Do the majority of stars form as gravitationally unbound?
- Tidal tails of open star clusters as probes to early gas expulsion I: A semi-analytic model
- Rotation of molecular clouds in M~51
- Tidal tails of open star clusters as probes to early gas expulsion II: Predictions for Gaia
- Detection of open cluster rotation fields from Gaia EDR3 proper motions
- Stellar Spins in the Pleiades, Praesepe, and M35 Open Clusters
- The Rotation of Selected Globular Clusters and the Differential Rotation of M3 in Multiple Populations from the SDSS-IV APOGEE-2 Survey
- Orbits of globular clusters computed with dynamical friction in the Galactic anisotropic velocity dispersion field
- Effect of orbital trapping by bar resonances in the local U-V velocity field
- On the nature of rotation in the Praesepe cluster
- : A Python Package for Analyzing Star Cluster Simulations
Cited by in corpus (6)
- Evolution of star clusters with initial bulk rotation via N-body simulations
- Tidal Tails of Nearby Open Clusters. II. A Review of Simulated Properties and the Reliability of Observational Catalogues
- Bayesian ages of local young stellar associations I. Through the expansion rate method
- Tidal tails in open clusters: Morphology, binary fraction, dynamics, and rotation
- Right round: onset and long-term evolution of rotation in star clusters
- The internal kinematics of local young stellar associations. Identifying correlations among age, expansion, rotation, and shear