Tidal disruption of star clusters in galaxy formation simulations
arXiv:2201.09826 · doi:10.1093/mnras/stac1751
Abstract
We investigate the evolution of the tidal field experienced by massive star clusters using cosmological simulations of Milky Way-sized galaxies. Clusters in our simulations experience the strongest tidal force in the first few hundred Myr after formation, when the maximum eigenvalue of the tidal tensor reaches several times Gyr. After about 1 Gyr the tidal field plateaus at a lower value, with the median Gyr. The fraction of time clusters spend in high tidal strength ( Gyr) regions also decreases with their age from 20% immediately after formation to less than 1% after 1 Gyr. At early ages both the in situ and ex situ clusters experience similar tidal fields, while at older ages the in situ clusters in general experience stronger tidal field due to their lower orbits in host galaxy. This difference is reflected in the survival of clusters: we looked into cluster disruption calculated in simulation runtime and found that ex situ star clusters of the same initial mass typically end up with higher bound fraction at the last available simulation snapshot than the in situ ones.
13 pages, 13 figures, accepted by MNRAS
References in corpus (15)
- Array Programming with NumPy
- Effects of Baryons and Dissipation on the Matter Power Spectrum
- Environmental Dependence of the Kennicutt-Schmidt Relation in Galaxies
- Cosmic Reionization On Computers I. Design and Calibration of Simulations
- Galactic Dark Matter Halos and Globular Cluster Populations. III: Extension to Extreme Environments
- Star cluster formation in cosmological simulations. I. Properties of young clusters
- Dark Matter Halos in Galaxies and Globular Cluster Populations
- The origin of the Milky Way globular clusters
- Modeling the Formation of Globular Cluster Systems in the Virgo Cluster
- Formation histories of stars, clusters and globular clusters in the E-MOSAICS simulations
- The Effect of Orbital Eccentricity on the Dynamical Evolution of Star Clusters
- Where did the globular clusters of the Milky Way form? Insights from the E-MOSAICS simulations
- The mass fraction of halo stars contributed by the disruption of globular clusters in the E-MOSAICS simulations
- Evolution of star cluster systems in isolated galaxies: first results from direct -body simulations
- The orbital evolution of UFDs and GCs in an evolving Galactic potential
Cited by in corpus (10)
- Great Balls of FIRE II: The evolution and destruction of star clusters across cosmic time in a Milky Way-mass galaxy
- The mass-loss rates of star clusters with stellar-mass black holes: implications for the globular cluster mass function
- The Ages and Metallicities of the Globular Clusters in the Sparkler
- SIEGE III: The formation of dense stellar clusters in sub-parsec resolution cosmological simulations with individual star feedback
- The role of radial migration in open cluster and field star populations with Gaia dr3
- GD-1 Stellar Stream and Cocoon in the DESI Early Data Release
- MOCCA: Global properties of tidally filling and underfilling globular star clusters with multiple stellar populations
- A systematic analysis of star cluster disruption by tidal shocks -- II. Predicting star cluster dissolution rates from a time-series analysis of their tidal histories
- MOCCA: Effects of pristine gas accretion and cluster migration on globular cluster evolution, global parameters, and multiple stellar populations
- Nature and nurture: the dynamical ages of in situ and accreted globular clusters in the Milky Way