The impact of binaries on the evolution of star clusters from turbulent molecular clouds
arXiv:2104.12781 · doi:10.1093/mnras/stab2238
Abstract
Most of massive stars form in binary or higher-order systems in clumpy, sub-structured clusters. In the very first phases of their life, these stars are expected to interact with the surrounding environment, before being released to the field when the cluster is tidally disrupted by the host galaxy. We present a set of N-body simulations to describe the evolution of young stellar clusters and their binary content in the first phases of their life. To do this, we have developed a method that generates realistic initial conditions for binary stars in star clusters from hydrodynamical simulations. We considered different evolutionary cases to quantify the impact of binary and stellar evolution. Also, we compared their evolution to that of King and fractal models with different length scales. Our results indicate that the global expansion of the cluster from hydrodynamical simulations is initially balanced by the sub-clump motion and accelerates when a monolithic shape is reached, as in a post-core collapse evolution. Compared to the spherical initial conditions, the ratio of the 50% to 10% Lagrangian radius shows a very distinctive trend, explained by the formation of a hot core of massive stars triggered by the high initial degree of mass segregation. As for its binary population, each cluster shows a self-regulating behaviour by creating interacting binaries with binding energies of the order of its energy scales. Also, in absence of original binaries, the dynamically formed binaries present a mass dependent binary fraction, that mimics the trend of the observed one.
15 pages, 12 figures, 1 table. Comments welcome
References in corpus (27)
- GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run
- Binary interaction dominates the evolution of massive stars
- A comprehensive set of simulations studying the influence of gas expulsion on star cluster evolution
- Gas expulsion and the destruction of massive young clusters
- Merging black hole binaries: the effects of progenitor's metallicity, mass-loss rate and Eddington factor
- The lifecycle of molecular clouds in nearby star-forming disc galaxies
- The Two Modes of Gas Giant Planet Formation
- Merging black holes in young star clusters
- Dynamics of stellar black holes in young star clusters with different metallicities - II. Black hole-black hole binaries
- Before the first supernova: combined effects of HII regions and winds on molecular clouds
- A stellar census in globular clusters with MUSE: The contribution of rotation to cluster dynamics studied with 200 000 stars
- Stellar-mass black holes in young massive and open stellar clusters and their role in gravitational-wave generation
- Dependency of dynamical ejections of O stars on the masses of very young star clusters
- The formation of NGC 3603 young starburst cluster: "prompt" hierarchical assembly or monolithic starburst?
- The Rotation of Sub-Populations in omega Centauri
- Rotation in young massive star clusters
- The Gaia-ESO Survey: Asymmetric expansion of the Lagoon Nebula cluster NGC 6530 from GES and Gaia DR2
- Different Fates of Young Star Clusters After Gas Expulsion
- The Detection Rates of Merging Binary Black Holes Originating from Star Clusters and Their Mass Function
- SIRIUS Project. III. Star-by-star simulations of star cluster formation using a direct N-body integrator with stellar feedback
- Implementing Primordial Binaries in Simulations of Star Cluster Formation with a Hybrid MHD and Direct N-Body Method
- Spin misalignment of black hole binaries from young star clusters: implications for the origin of gravitational waves events
- On the Link Between Energy Equipartition and Radial Variation in the Stellar Mass Function of Star Clusters
- Formation of young massive clusters from turbulent molecular clouds
- The evolutionary tracks of young massive star clusters
- From hydrodynamics to N-body simulations of star clusters: mergers and rotation
- Pre-supernova feedback mechanisms drive the destruction of molecular clouds in nearby star-forming disc galaxies
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- Dynamics of binary black holes in young star clusters: the impact of cluster mass and long-term evolution
- Early Evolution and 3D Structure of Embedded Star Clusters
- Unresolved Binaries in the Intermediate Mass Range in the Pleiades Star Cluster
- Hierarchical generative models for star clusters from hydro-dynamical simulations
- A machine learning framework to generate star cluster realisations