Monte Carlo Simulations of Globular Cluster Evolution. IV. Direct Integration of Strong Interactions
arXiv:astro-ph/0608261 · doi:10.1086/511809
Abstract
We study the dynamical evolution of globular clusters containing populations of primordial binaries, using our newly updated Monte Carlo cluster evolution code with the inclusion of direct integration of binary scattering interactions. We describe the modifications we have made to the code, as well as improvements we have made to the core Monte Carlo method. We present several test calculations to verify the validity of the new code, and perform many comparisons with previous analytical and numerical work in the literature. We simulate the evolution of a large grid of models, with a wide range of initial cluster profiles, and with binary fractions ranging from 0 to 1, and compare with observations of Galactic globular clusters. We find that our code yields very good agreement with direct N-body simulations of clusters with primordial binaries, but yields some results that differ significantly from other approximate methods. Notably, the direct integration of binary interactions reduces their energy generation rate relative to the simple recipes used in Paper III, and yields smaller core radii. Our results for the structural parameters of clusters during the binary-burning phase are now in the tail of the range of parameters for observed clusters, implying that either clusters are born significantly more or less centrally concentrated than has been previously considered, or that there are additional physical processes beyond two-body relaxation and binary interactions that affect the structural characteristics of clusters.
Accepted for publication in ApJ; 17 pages, 19 figures; changes to reflect accepted version
References in corpus (4)
- Massive Black Hole Binaries from Collisional Runaways
- Star Clusters with Primordial Binaries: I. Dynamical Evolution of Isolated Models
- Star Clusters with Primordial Binaries: III. Dynamical Interaction between Binaries and an Intermediate Mass Black Hole
- Star Clusters with Primordial Binaries: II. Dynamical Evolution of Models in a Tidal Field
Cited by in corpus (120)
- Young massive star clusters
- Binary Black Hole Mergers from Globular Clusters: Masses, Merger Rates, and the Impact of Stellar Evolution
- The Formation of Eccentric Compact Binary Inspirals and the Role of Gravitational Wave Emission in Binary-Single Stellar Encounters
- Black Holes: The Next Generation -- Repeated Mergers in Dense Star Clusters and their Gravitational-Wave Properties
- One Channel to Rule Them All? Constraining the Origins of Binary Black Holes using Multiple Formation Pathways
- COSMIC Variance in Binary Population Synthesis
- Formation and evolution of compact binaries in globular clusters: II. Binaries with neutron stars
- The Dynamical Evolution of Stellar Black Holes in Globular Clusters
- Post-Newtonian Dynamics in Dense Star Clusters: Highly-Eccentric, Highly-Spinning, and Repeated Binary Black Hole Mergers
- Post-Newtonian Dynamics in Dense Star Clusters: Formation, Masses, and Merger Rates of Highly-Eccentric Black Hole Binaries
- What is a globular cluster? An observational perspective
- Eccentric Black Hole Mergers in Dense Star Clusters: The Role of Binary-Binary Encounters
- The DRAGON simulations: globular cluster evolution with a million stars
- Relativistic Dynamics and Extreme Mass Ratio Inspirals
- Modeling Dense Star Clusters in the Milky Way and Beyond with the Cluster Catalog
- Compact Binaries in Star Clusters I - Black Hole Binaries Inside Globular Clusters
- Distinguishing Between Formation Channels for Binary Black Holes with LISA
- On the Rate of Neutron Star Binary Mergers from Globular Clusters
- Populating the upper black hole mass gap through stellar collisions in young star clusters
- Retention of Stellar-Mass Black Holes in Globular Clusters
- Implications of Eccentric Observations on Binary Black Hole Formation Channels
- No Energy Equipartition in Globular Clusters
- Joint constraints on the field-cluster mixing fraction, common envelope efficiency, and globular cluster radii from a population of binary hole mergers via deep learning
- Evidence for primordial mass segregation in globular clusters
- Modeling Dense Star Clusters in the Milky Way and Beyond with the Cluster Monte Carlo Code
- Stellar-mass black holes in young massive and open stellar clusters IV: updated stellar-evolutionary and black hole spin models and comparisons with the LIGO-Virgo O1/O2 merger-event data
- Post-Newtonian Dynamics in Dense Star Clusters: Binary Black Holes in the LISA Band
- Monte Carlo Simulations of Globular Cluster Evolution. V. Binary Stellar Evolution
- Intermediate-mass Black Holes from High Massive-star Binary Fractions in Young Star Clusters
- Ratios of star cluster core and half-mass radii: a cautionary note on intermediate-mass black holes in star clusters
- How initial size governs core collapse in globular clusters
- Dynamics of stellar black holes in young star clusters with different metallicities - I. Implications for X-ray binaries
- A Parallel Monte Carlo Code for Simulating Collisional N-body Systems
- Black Hole Mergers from Hierarchical Triples in Dense Star Clusters
- Dynamical Formation of Low-Mass Merging Black Hole Binaries like GW151226
- Millisecond Pulsars and Black Holes in Globular Clusters
- Million-Body Star Cluster Simulations: Comparisons between Monte Carlo and Direct -body
- How black holes shape globular clusters: Modeling NGC 3201
- Tidal disruption, global mass function and structural parameters evolution in star clusters
- LISA sources in Milky Way globular clusters
- Outer density profiles of 19 Galactic globular clusters from deep and wide-field imaging
- Intermediate Mass Black Hole Induced Quenching of Mass Segregation in Star Clusters
- A Dynamical Survey of Stellar-Mass Black Holes in 50 Milky Way Globular Clusters
- Evolution of the Binary Fraction in Dense Stellar Systems
- Understanding the Dynamical State of Globular Clusters: Core-Collapsed vs Non Core-Collapsed
- Stellar Collisions and Blue Straggler Stars in Dense Globular Clusters
- Monte Carlo Simulations of Star Clusters - V. The globular cluster M4
- GW190412 as a Third-Generation Black Hole Merger from a Super Star Cluster
- Multiple Stellar Evolution: a population synthesis algorithm to model the stellar, binary, and dynamical evolution of multiple-star systems
- Accreting black hole binaries in globular clusters
- Tidal Disruptions of Stars by Black Hole Remnants in Dense Star Clusters
- White Dwarf Subsystems in Core-Collapsed Globular Clusters
- Monte Carlo Simulations of Globular Cluster Evolution. VI. The Influence of an Intermediate Mass Black Hole
- Can Neutron-Star Mergers Explain the r-process Enrichment in Globular Clusters?
- Towards an N-body Model for the Globular Cluster M4
- In Search of the Thermal Eccentricity Distribution
- A new Monte Carlo method for dynamical evolution of non-spherical stellar systems
- Predicting Stellar-Mass Black Hole Populations in Globular Clusters
- The Dynamical Effects of White Dwarf Birth Kicks in Globular Star Clusters
- Stellar Escape from Globular Clusters. I. Escape Mechanisms and Properties at Ejection
- Fast Optical Transients from Stellar-Mass Black Hole Tidal Disruption Events in Young Star Clusters
- What You Don't Know Can Hurt You: Use and Abuse of Astrophysical Models in Gravitational-wave Population Analyses
- Great Balls of FIRE II: The evolution and destruction of star clusters across cosmic time in a Milky Way-mass galaxy
- Compact Object Modeling in the Globular Cluster 47 Tucanae
- Stellar-mass black holes in young massive and open stellar clusters V: comparisons with LIGO-Virgo merger rate densities
- Quantifying the Universality of the Stellar Initial Mass Function in Old Star Clusters
- X-Ray Binaries and the Current Dynamical States of Galactic Globular Clusters
- Growing Black Holes through Successive Mergers in Galactic Nuclei: I. Methods and First Results
- Stellar graveyards: Clustering of compact objects in globular clusters NGC 3201 and NGC 6397
- On the Origin of Sub-subgiant Stars. III. Formation Frequencies
- The Role of "Black Hole Burning" in the Evolution of Dense Star Clusters
- Monte Carlo simulations of multiple populations in globular clusters: constraints on the cooling flow vs. accretion scenario using million bodies simulations
- Matching Globular Cluster Models to Observations
- The Redshift Evolution of the Binary Black Hole Mass Distribution from Dense Star Clusters
- Gravitational Waves as a Probe of Globular Cluster Formation and Evolution
- Demographics of triple systems in dense star clusters
- Formation of Low-mass Black Holes and Single Millisecond Pulsars in Globular Clusters
- MOCCA: Dynamics and evolution of binary stars of multiple stellar populations in tidally filling and underfilling globular star clusters
- Intermediate-mass Black Holes on the Run from Young Star Clusters
- The Candidate Intermediate-Mass Black Hole in the Globular Cluster M54
- Star cluster dynamics
- Mock Observations of Blue Stragglers in Globular Cluster Models
- Effects of Hardness of Primordial Binaries on Evolution of Star Clusters
- Treatment of realistic tidal field in Monte Carlo simulations of star clusters
- MOCCA code for star cluster simulations - VI. Bimodal spatial distribution of blue stragglers
- Self-consistent simulations of star cluster formation from gas clouds under the influence of galaxy-scale tidal fields
- Runaway and Hypervelocity Stars from Compact Object Encounters in Globular Clusters
- Accelerated binary black holes in globular clusters: forecasts and detectability in the era of space-based gravitational-wave detectors
- Black Holes In Young Stellar Clusters
- Lower-mass-gap Black Holes in Dense Star Clusters
- MOCCA code for star cluster simulations - V. Initial globular cluster conditions influence on blue stragglers
- Consistent eccentricities for gravitational wave astronomy: Resolving discrepancies between astrophysical simulations and waveform models
- A New Hybrid Technique for Modeling Dense Star Clusters
- Formation and evolution of binary black holes in -body simulations of star clusters with up to two million stars
- Dynamical Formation Scenarios for GW190521 and Prospects for Decihertz Gravitational-Wave Astronomy with GW190521-Like Binaries
- Planets in Open Clusters Detectable by Kepler
- G2C2-III: Structural parameters for Galactic globular clusters in SDSS passbands
- Probing the Survival of Planetary Systems in Globular Clusters with Tidal Disruption Events
- Constraining Intermediate-Mass Black Holes in Globular Clusters
- MOCCA: Global properties of tidally filling and underfilling globular star clusters with multiple stellar populations
- Higher order moment models of dense stellar systems: Applications to the modeling of the stellar velocity distribution function
- Single Millisecond Pulsars from Dynamical Interaction Processes in Dense Star Clusters
- Millisecond Pulsars in Dense Star Clusters: Evolution, Scaling Relations, and the Galactic-Center Gamma-ray Excess
- Shadows of the Colossus: Hierarchical Black Hole Mergers in a 10-million-body Globular Cluster Simulation
- MOCCA: Effects of pristine gas accretion and cluster migration on globular cluster evolution, global parameters, and multiple stellar populations
- Evolution of Compact-Binary Populations in Globular Clusters: A Boltzmann Study II. Introducing Stochasticity
- Neutron Stars and Black Holes in Star Clusters
- Influences of dynamical disruptions on the evolution of pulsars in globular clusters
- Interactions among binary black holes in star clusters: Eccentric gravitational wave captures and triple formation
- Multiple stellar populations in MOCCA globular cluster models: Transient spatial over-concentration of pristine red giant stars driven by strong dynamical encounters
- Dynamical Processes in Globular Clusters
- Binary Stars and Globular Cluster Dynamics
- Effects of stellar collisions on star cluster evolution and core collapse
- Binary-single interactions with different mass ratios
- Modelling individual globular clusters
- Is the overconcentration of pristine populations in Galactic globular clusters real? An N-body approach to the problem
- Dynamical double black holes and their host cluster properties
- The Role of High-mass Stellar Binaries in the Formation of High-mass Black Holes in Dense Star Clusters
- Gravitational Microlensing Rates in Milky Way Globular Clusters
- Binary populations and stellar dynamics in young clusters