Signature of systemic rotation in 21 Galactic Globular Clusters from APOGEE-2
arXiv:2404.10902 · doi:10.1051/0004-6361/202347550
Abstract
Context. Traditionally, Globular Clusters (GCs) have been assumed to be quasi-relaxed non-rotating systems, characterized by spherical symmetry and orbital isotropy. However, in recent years, a growing set of observational evidence is unveiling an unexpected dynamical complexity in Galactic GCs. Indeed, kinematic studies show that a measurable amount of internal rotation is present in many present-day GCs. Aims. The objective of this work is to analyse the APOGEE-2 Value-Added Catalogs (VACs) DR17 data of a sample of 21 GCs to extend the sample showing signatures of systemic rotation, in order to better understand the kinematic properties of GCs in general. Also, we aim to identify the fastest rotating GC from the sample of objects with suitable measurements. Methods. From the sample of 23 GCs included in this work, the presence of systemic rotation was detected in 21 of the GCs, using three different methods. All these methods use the radial velocity referred to the cluster systemic velocity. Using the first method, it was possible to visually verify the clear-cut signature of systemic rotation. Whereas, using the second and third methods, it was possible to determine the amplitude of the rotation curve and the position angle of the rotation axis. Results. This study shows that 21 GCs have a signature of systemic rotation. For these clusters, the rotation amplitude and the position angle of the rotation axis have been calculated. The clusters cover a remarkable range of rotational amplitudes, from 0.77 km/s to 13.85 km/s.
References in corpus (30)
- Gaia EDR3 view on Galactic globular clusters
- A stellar census in globular clusters with MUSE: The contribution of rotation to cluster dynamics studied with 200 000 stars
- The wide-field, multiplexed, spectroscopic facility WEAVE: Survey design, overview, and simulated implementation
- Halo globular clusters observed with AAOmega: dark matter content, metallicity and tidal heating
- The eye of Gaia on globular clusters kinematics: internal rotation
- Measuring Consistent Masses for 25 Milky Way Globular Clusters
- Central rotations of Milky Way Globular Clusters
- N-body Models of Rotating Globular Clusters
- Hubble Space Telescope Proper Motion (HSTPROMO) Catalogs of Galactic Globular Clusters. V. The rapid rotation of 47 Tuc traced and modeled in three dimensions
- The Rotation of Sub-Populations in omega Centauri
- Differences in the rotational properties of multiple stellar populations in M 13: a faster rotation for the "extreme" chemical subpopulation
- The Gaia-ESO Survey: Kinematics of seven Galactic globular clusters
- Rotation in young massive star clusters
- Comparative study between N-body and Fokker-Planck simulations for rotating star clusters: I. Equal-mass system
- Comparative study between N-body and Fokker-Planck simulations for rotating star clusters - II. 2-component models
- Kinematical fingerprints of star cluster early dynamical evolution
- A Chemical Composition Survey of the Iron-Complex Globular Cluster NGC 6273 (M 19)
- Multiple stellar populations of globular clusters from homogeneous Ca-Cn photometry. II. M5 (NGC 5904) and a new filter system
- A deep view into the nucleus of the Sagittarius Dwarf Spheroidal Galaxy with MUSE. II. Kinematic characterization of the stellar populations
- The impact of stellar evolution on rotating star clusters: the gravothermal-gravogyro catastrophe and the formation of a bar of black holes
- The Flattening of Globular Clusters
- The complex kinematics of rotating star clusters in a tidal field
- 3D core kinematics of NGC6362: central rotation in a dynamically evolved globular cluster
- Gaia and Hubble unveil the kinematics of stellar populations in the Type II globular clusters ω Centauri and M 22
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. XXIV. Differences in internal kinematics of multiple stellar populations
- Early dynamical evolution of rotating star clusters in a tidal field
- The Rotation of Selected Globular Clusters and the Differential Rotation of M3 in Multiple Populations from the SDSS-IV APOGEE-2 Survey
- AAOmega Observations of 47 Tucanae: Evidence for a Past Merger?
- Early dynamics and violent relaxation of multi-mass rotating star clusters
- First observational evidence of a relation between globular clusters' internal rotation and stellar masses
Cited by in corpus (6)
- A 3D view of multiple populations kinematics in Galactic globular clusters
- The Kinematics of 30 Milky Way Globular Clusters and the Multiple Stellar Populations within
- Evolution of the disky second generation of stars in globular clusters on cosmological timescale
- Robust ellipticity measurements of 29 Galactic globular clusters
- Signatures and bias assessment of rotation in galaxy cluster members
- Kinematical and dynamical properties of recently discovered bulge and disc star clusters with WINERED