Impact of a star formation efficiency profile on the evolution of open clusters
arXiv:1706.03228 · doi:10.1051/0004-6361/201730607
Abstract
We study the effect of the instantaneous gas expulsion on star clusters wherein the residual gas has a density profile shallower than that of the embedded cluster. This is expected if star formation proceeds with a given SFE per free-fall time in a centrally-concentrated molecular clump. We perform direct N-body simulations whose initial conditions are generated by the program "mkhalo" "falcON" adapted for our models. Our model clusters initially have a Plummer profile and are in virial equilibrium with the gravitational potential of the cluster-forming clump. The residual gas contribution is computed based on the model of Parmentier&Pfalzner(2013). Our simulations include mass loss by stellar evolution and the tidal field of the Galaxy. We find that a star cluster with a minimum global SFE of 15% is able to survive instantaneous gas expulsion and to produce a bound cluster. Its violent relaxation lasts no longer than 20 Myr, independently of its global SFE and initial stellar mass. At the end of violent relaxation the bound fractions of surviving clusters with the same global SFEs are similar regardless of their initial stellar mass. Their subsequent lifetime in the gravitational field of the Galaxy depends on their bound stellar masses. We therefore conclude that the critical SFE needed to produce a bound cluster is 15%, which is twice smaller than earlier estimates of 33%. Thus we have improved the survival likelihood of young clusters after instantaneous gas expulsion. Those can now survive instantaneous gas expulsion with global SFEs as low as those observed for embedded clusters of Solar Neighbourhood (15-30%). This is the consequence of the star cluster having a density profile steeper than that of the residual gas. However, in terms of the effective SFE, measured by the virial ratio of the cluster at gas expulsion, our results are in agreement with previous studies.
Accepted for publication in Astronomy&Astrophysics, 13 pages, 10 figures
References in corpus (10)
- Slow Star Formation in Dense Gas: Evidence and Implications
- A comprehensive set of simulations studying the influence of gas expulsion on star cluster evolution
- Gas expulsion and the destruction of massive young clusters
- The Dynamics of Radiation Pressure-Dominated HII Regions
- Unfolding the Laws of Star Formation: The Density Distribution of Molecular Clouds
- Initial conditions for disc galaxies
- The bound fraction of young star clusters
- The Origin of the Gaussian Initial Mass Function of Old Globular Cluster Systems
- The difficult early stages of embedded star clusters and the importance of the pre-gas expulsion virial ratio
- The evolutionary tracks of young massive star clusters
Cited by in corpus (27)
- Radiation hydrodynamics simulations of massive star cluster formation in giant molecular clouds
- Realistic modeling of wind and supernovae shocks in star clusters: addressing and other problems in Galactic cosmic rays
- Different Fates of Young Star Clusters After Gas Expulsion
- Stellar-mass black holes in young massive and open stellar clusters V: comparisons with LIGO-Virgo merger rate densities
- Global survey of star clusters in the Milky Way -- VII. Tidal parameters and mass function
- Star Cluster Formation and Survival in the First Galaxies
- The bound mass of Dehnen models with centrally peaked star formation efficiency
- Collinder 135 and UBC 7: A Physical Pair of Open Clusters
- SIEGE III: The formation of dense stellar clusters in sub-parsec resolution cosmological simulations with individual star feedback
- The star cluster survivability after gas expulsion is independent of the impact of the Galactic tidal field
- Far and extreme UV radiation feedback in molecular clouds and its influence on the mass and size of star clusters
- A Monte Carlo study of early gas expulsion and evolution of star clusters: new simulations with the MOCCA code in the AMUSE framework
- Global properties, fractality, and mass segregation in single, paired, and grouped open clusters
- Dynamical evolution of Milky Way globular clusters on the cosmological timescale I. Mass loss and interaction with the nuclear star cluster
- The formation of globular clusters with top-heavy initial mass functions
- Open cluster dissolution rate and the initial cluster mass function in the solar neighbourhood. Modelling the age and mass distributions of clusters observed by Gaia
- Cluster membership analysis with supervised learning and -body simulations
- Star-by-star dynamical evolution of the physical pair of the Collinder 135 and UBC 7 open clusters
- Are hierarchically formed embedded star clusters surviving gas expulsion depending on their initial conditions?
- Fractal dimension of star clusters
- Dynamical evolution of the open clusters with different star formation efficiencies and orbital parameters
- Dynamical model of Praesepe and its tidal tails
- Centrally concentrated star formation in young clusters
- Global survey of star clusters in the Milky Way VIII. Cluster formation and evolution
- Rebounding Cores to Build Star Cluster Multiple Populations
- Dynamical evolution modeling of the Collinder 135 & UBC 7 binary star cluster
- The contribution to Galactic Centre γ-ray excess from cluster-born millisecond pulsars. Constraints from direct N-body simulations