Milky Way globular clusters on cosmological timescales. III. Interaction rates
arXiv:2308.12699 · doi:10.1051/0004-6361/202346553
Abstract
Aims. We carry out the self-consistent dynamic evolution of the orbital structure of Milky Way globular clusters. This allows us to estimate possible and probable close passages and even collisions of the clusters with each other. Methods. We reproduced the orbits of 147 globular clusters in 10 Gyr lookback time using our own high-order N-body parallel dynamic phi-GPU code. The initial conditions (three coordinates and three velocities for the present time) were derived from the Gaia DR3 catalogue. The galaxy is represented by five external potentials from the IllustrisTNG-100, whose masses and sizes of the disk and halo components are similar to the physical values of the Milky Way at present. Results. We present a statistical analysis of the cumulative close passages rate: About ten close passages with relative distances shorter than 50 pc for every billion years for each of the five external potentials. We present the 22 most reliable collision pairs with a good probability. As an example: Terzan 4 versus Terzan 2 (49%), Terzan 4 versus NGC 6624 (44%), Terzan 4 versus Terzan 5 (40%), Terzan 4 versus NGC 6440 (40%), and Terzan 4 versus Liller 1 (42%). The most active globular cluster in the collision sense is Terzan 4, which has 5.65 collision events on average (averaged over all individual 1000 initial condition realisations). Most collisions are located inside the Galactic disk and form two ring-like structures. The first ring-like structure has the highest collision number density at 1 kpc, and the second sturcture has a maximum at 2 kpc. Conclusions. Based on our numerical simulations, we can conclude that the few dozen Milky Way globular clusters probably undergo some close encounters and even possible collisions during their lifetimes, which can significantly affect their individual dynamical evolution and possibly even their stellar content.
11 pages, 9 figures, 3 tables, accepted for publication in Astronomy and Astrophysics
References in corpus (10)
- Gaia EDR3 view on Galactic globular clusters
- The Milky Way's circular velocity curve between 4 and 14 kpc from APOGEE data
- Accurate distances to Galactic globular clusters through a combination of Gaia EDR3, HST and literature data
- Gaia Early Data Release 3: Summary of the contents and survey properties
- 6th and 8th Order Hermite Integrator for N-body Simulations
- Revised Geometric Estimates of the North Galactic Pole and the Sun's Height Above the Galactic Midplane
- Milky Way globular clusters on cosmological timescales. I. Evolution of the orbital parameters in time-varying potentials
- Milky Way globular clusters on cosmological timescales. II. Interaction with the Galactic centre
- Study of the Influence of an Evolving Galactic Potential on the Orbital Properties of 152 Globular clusters with Data from the Gaia EDR3 Catalogue
- Statistical Analysis of the Probability of Interaction of Globular Clusters with Each Other and with the Galactic Center on the Cosmological Time Scale According to Gaia DR2 Data
Cited by in corpus (7)
- Dynamical evolution of Milky Way globular clusters on the cosmological timescale I. Mass loss and interaction with the nuclear star cluster
- On the manifest link between Terzan 5 and the Galactic bulge
- Phase-space mixing of multiple stellar populations in globular clusters
- Gaps in stellar streams as a result of globular cluster fly-bys
- Star-by-star dynamical evolution of the physical pair of the Collinder 135 and UBC 7 open clusters
- Milky Way globular clusters on cosmological timescales. IV. Guests in the outer Solar System
- Globular clusters of the Gaia Enceladus/Sausage -- I. Orbital and dynamical evolution on cosmological timescales