A new Monte Carlo code for star cluster simulations: II. Central black hole and stellar collisions
arXiv:astro-ph/0204292 · doi:10.1051/0004-6361:20021142
Abstract
We have recently written a new code to simulate the long term evolution of spherical clusters of stars. It is based on the pioneering Monte Carlo scheme proposed by Henon in the 70's. Our code has been devised in the specific goal to treat dense galactic nuclei. After having described how we treat relaxation in a first paper, we go on and include further physical ingredients that are mostly pertinent to galactic nuclei, namely the presence of a central (growing) black hole (BH) and collisions between MS stars. Stars that venture too close to the BH are destroyed by the tidal field. This process is a channel to feed the BH and a way to produce accretion flares. Collisions between stars have often been proposed as another mechanism to drive stellar matter into the central BH. To get the best handle on the role of this process in galactic nuclei, we include it with unpreceded realism through the use of a set of more than 10000 collision simulations carried out with a SPH (Smoothed Particle Hydrodynamics) code. Stellar evolution has also been introduced in a simple way, similar to what has been done in previous dynamical simulations of galactic nuclei. To ensure that this physics is correctly simulated, we realized a variety of tests whose results are reported here. This unique code, featuring most important physical processes, allows million particle simulations, spanning a Hubble time, in a few CPU days on standard personal computers and provides a wealth of data only rivalized by N-body simulations.
32 pages, 19 figures. Slightly shortened and clarified following referee's suggestions. Accepted for publication in A&A. Version with high quality figures available at http://obswww.unige.ch/~freitag/papers/article_MC2.ps.gz
References in corpus (23)
- Formation of Galactic Nuclei
- Evolution of massive binary black holes
- Supermassive Black Holes in Active Galactic Nuclei. I. The Consistency of Black Hole Masses in Quiescent and Active Galaxies
- Evolution of circular, non-equatorial orbits of Kerr black holes due to gravitational-wave emission: II. Inspiral trajectories and gravitational waveforms
- The Merger History of Supermassive Black Holes in Galaxies
- Scaling of N-body calculations
- Stellar Collisions and the Interior Structure of Blue Stragglers
- Dynamics of a Massive Black Hole at the Center of a Dense Stellar System
- A new Monte Carlo code for star cluster simulations: I. Relaxation
- Feeding black holes at galactic centres by capture from isothermal cusps
- Dynamical evolution of rotating stellar systems - II. Post-collapse, equal mass system
- Monte Carlo cluster simulations to determine the rate of compact star inspiraling to a central galactic black hole
- Mass Segregation in Globular Clusters
- Cusp Disruption in Minor Mergers
- Tidal scattering of stars on supermassive black holes in galactic centers
- Orbital decay of satellites crossing an accretion disc
- The role of the central stellar cluster in active galactic nuclei. I. Semi-analytical model
- Black Hole Growth in Dark Matter and the M_{bh} - σRelation
- On formation rate of close binaries consisting of a super-massive black hole and a white dwarf
- Triaxial Black-Hole Nuclei
- A New Way to Detect Massive Black Holes in Galaxies: The Stellar Remnants of Tidal Disruption
- Binaries and Globular Cluster Dynamics
- Activity From Tidal Disruptions in Galactic Nuclei
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- Science with the space-based interferometer LISA. V: Extreme mass-ratio inspirals
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- Formation of Massive Black Holes in Dense Star Clusters. I. Mass Segregation and Core Collapse
- Stellar Processes Near the Massive Black Hole in the Galactic Center
- Runaway collisions in young star clusters. II. Numerical results
- The effect of mass-segregation on gravitational wave sources near massive black holes
- Resonant relaxation near a massive black hole: the stellar distribution and gravitational wave sources
- Stellar remnants in galactic nuclei: mass segregation
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- The orbital statistics of stellar inspiral and relaxation near a massive black hole: characterizing gravitational wave sources
- Performance Analysis of Direct N-Body Algorithms on Special-Purpose Supercomputers
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- The Tidal Disruption of Giant Stars and Their Contribution to the Flaring Supermassive Black Hole Population
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- Modeling Dense Star Clusters in the Milky Way and Beyond with the Cluster Monte Carlo Code
- Science with the TianQin observatory: Preliminary result on extreme-mass-ratio inspirals
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- Dynamic Signatures of Black Hole Binaries with Superradiant Clouds
- Dynamical Friction of Galactic Center Star Clusters with an Intermediate-Mass Black Hole
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- The Disruption of Stellar Clusters Containing Massive Black Holes near the Galactic Center
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- Secular Stellar Dynamics near a Massive Black Hole
- Spoon-Feeding Giant Stars to Supermassive Black Holes: Episodic Mass Transfer from Evolving Stars and Their Contribution to the Quiescent Activity of Galactic Nuclei
- Tidal Disruption of a Star By a Black Hole : Observational Signature
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- The presence of intermediate-mass black holes in globular clusters and their connection with extreme horizontal branch stars
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- The role of the supermassive black hole spin in the estimation of the EMRI event rate
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- Gravitational wave bursts from the Galactic massive black hole
- Orbital inspiral into a massive black hole in a galactic center
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- Monte Carlo Simulations of Globular Cluster Evolution. VI. The Influence of an Intermediate Mass Black Hole
- A Late-Time Radio Flare following a Possible Transition in Accretion State in the Tidal Disruption Event AT 2019azh
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- Weighing the cusp at the Galactic Centre
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- 2D Fokker-Planck models of rotating clusters
- MODEST-1: Integrating Stellar Evolution and Stellar Dynamics
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- Modelling Collision Products of Triple-Star Mergers
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- A mass estimate of an intermediate-mass black hole in omega Centauri
- Stellar and gas dynamical model for tidal disruption events in a quiescent galaxy
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- The MODEST questions: challenges and future directions in stellar cluster research
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- Gravitational radiation timescales for extreme mass ratio inspirals
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- Higher order moment models of dense stellar systems: Applications to the modeling of the stellar velocity distribution function
- The origin of cores and density profiles of gaseous baryonic structures
- Tidal disruption rates in non-spherical galactic nuclei formed by galaxy mergers
- Stellar collisions in accreting protoclusters: a Monte Carlo dynamical study
- Resonant Relaxation near the Massive Black Hole in the Galactic Center
- Introducing a new multi-particle collision method for the evolution of dense stellar systems. Crash-test N-body simulations
- Cosmic distributions of stellar tidal disruptions by massive black holes at galactic centers
- Self-consistent Solutions of Evolving Nuclear Star Clusters with Two-Dimensional Monte-Carlo Dynamical Simulations
- The correlations of stellar tidal disruption rates with properties of massive black holes and their host galaxies
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- Co-evolution of Nuclear Star Clusters and Massive Black Holes: Extreme Mass-Ratio Inspirals
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