Evolution of star clusters in a cosmological tidal field
arXiv:1309.7352 · doi:10.1093/mnras/stt1848
Abstract
We present a method to couple N-body star cluster simulations to a cosmological tidal field, using the Astrophysical Multipurpose Software Environment. We apply this method to star clusters embedded in the CosmoGrid dark matter-only LambdaCDM simulation. Our star clusters are born at z = 10 (corresponding to an age of the Universe of about 500 Myr) by selecting a dark matter particle and initializing a star cluster with 32,000 stars on its location. We then follow the dynamical evolution of the star cluster within the cosmological environment. We compare the evolution of star clusters in two Milky-Way size haloes with a different accretion history. The mass loss of the star clusters is continuous irrespective of the tidal history of the host halo, but major merger events tend to increase the rate of mass loss. From the selected two dark matter haloes, the halo that experienced the larger number of mergers tends to drive a smaller mass loss rate from the embedded star clusters, even though the final masses of both haloes are similar. We identify two families of star clusters: native clusters, which become part of the main halo before its final major merger event, and the immigrant clusters, which are accreted upon or after this event; native clusters tend to evaporate more quickly than immigrant clusters. Accounting for the evolution of the dark matter halo causes immigrant star clusters to retain more mass than when the z=0 tidal field is taken as a static potential. The reason for this is the weaker tidal field experienced by immigrant star clusters before merging with the larger dark matter halo.
14 pages, 14 figures, accepted for publication in MNRAS
References in corpus (7)
- The Astrophysical Multipurpose Software Environment
- A multiphysics and multiscale software environment for modeling astrophysical systems
- The effect of spiral arm passages on the evolution of stellar clusters
- Monte Carlo Simulations of Star Clusters - VI. The globular cluster NGC 6397
- The role of galaxy mergers on the evolution of star clusters
- Star Cluster Evolution in Dark Matter Dominated Galaxies
- High Performance Gravitational N-body Simulations on a Planet-wide Distributed Supercomputer
Cited by in corpus (35)
- Star Clusters Across Cosmic Time
- Globular clusters as the relics of regular star formation in 'normal' high-redshift galaxies
- The E-MOSAICS Project: simulating the formation and co-evolution of galaxies and their star cluster populations
- Globular cluster formation in the context of galaxy formation and evolution
- A parsec-resolution simulation of the Antennae galaxies: Formation of star clusters during the merger
- Star clusters near and far; tracing star formation across cosmic time
- The origin of the Milky Way globular clusters
- A unified model for the maximum mass-scales of molecular clouds, stellar clusters, and high-redshift clumps
- Milky Way Mass and Potential Recovery Using Tidal Streams in a Realistic Halo
- Stability of Multiplanetary Systems in Star Clusters
- Star cluster formation in cosmological simulations. III. Dynamical and chemical evolution
- Star Clusters in Evolving Galaxies
- Formation and evolution of young massive clusters in galaxy mergers: the SMUGGLE view
- The difference in metallicity distribution functions of halo stars and globular clusters as a function of galaxy type: A tracer of globular cluster formation and evolution
- The evolution of the Sun's birth cluster and the search for the solar siblings with Gaia
- Great Balls of FIRE II: The evolution and destruction of star clusters across cosmic time in a Milky Way-mass galaxy
- The Size of Star Clusters Accreted by the Milky Way
- The formation and early evolution of embedded star clusters in spiral galaxies
- Radial variation of the stellar mass functions in the globular clusters M15 and M30: clues of a non-standard IMF?
- A tight relation between the age distributions of stellar clusters and the properties of the interstellar medium in the host galaxy
- Evolution of star cluster systems in isolated galaxies: first results from direct -body simulations
- Radial Variation in the Stellar Mass Functions of Star Clusters
- A flexible method to evolve collisional systems and their tidal debris in external potentials
- The Dynamical Evolution of Accreted Star Clusters in the Milky Way
- On the Survival of High-Altitude Open Clusters within the Milky Way Galaxy Tides
- Testing lowered isothermal models with direct N-body simulations of globular clusters - II: Multimass models
- The First Billion Years Project: Finding Infant Globular Clusters at z=6
- Stellar cluster formation in a Milky Way-sized galaxy at z>4 -- I. The proto-globular cluster population and the imposter amongst us
- The effect of secular galactic growth on the evolution of star clusters
- Reconstructing the initial mass function of disc-bulge Galactic globular clusters from N-body simulations
- Galactic orbital motions of star clusters: static versus semicosmological time-dependent Galactic potentials
- The influence of globular cluster evolution on the specific frequency in dwarf galaxies
- The Early Evolution of Star Clusters in Compressive and Extensive Tidal Fields
- Evolution of Star Cluster Within Galaxy using Self-consistent Hybrid Hydro/N-body Simulation
- On the Ejection of Dark Matter from Globular Clusters