A new Fokker-Planck approach for relaxation-driven evolution of galactic nuclei
arXiv:1709.04467 · doi:10.3847/1538-4357/aa8cc8
Abstract
We present an approach for simulating the collisional evolution of spherical isotropic stellar systems based on the one-dimensional Fokker-Planck equation. A novel aspect is that we use the phase volume as the argument of the distribution function, instead of the traditionally used energy, which facilitates the solution. The publicly available code, PhaseFlow, implements a high-accuracy finite-element method for the Fokker-Planck equation, and can handle multiple-component systems, optionally with the central black hole and taking into account loss-cone effects and star formation. We discuss the energy balance in the general setting, and in application to the Bahcall-Wolf cusp around a central black hole, for which we derive a perturbative solution. We stress that the cusp is not a steady-state structure, but rather evolves in amplitude while retaining an approximately density profile. Finally, we apply the method to the nuclear star cluster of the Milky Way, and illustrate a possible evolutionary scenario in which a two-component system of lighter main-sequence stars and stellar-mass black holes develops a Bahcall-Wolf cusp in the heavier component and a weaker cusp in the lighter, visible component, over the period of several Gyr. The present-day density profile is consistent with the recently detected mild cusp inside the central parsec, and is weakly sensitive to initial conditions.
accepted by ApJ
References in corpus (4)
- An Improved Distance and Mass Estimate for Sgr A* from a Multistar Orbit Analysis
- Formation and evolution of nuclear star clusters with in-situ star-formation: Nuclear cores and age segregation
- A new Monte Carlo method for dynamical evolution of non-spherical stellar systems
- A Hybrid N-Body Code Incorporating Algorithmic Regularization and Post-Newtonian Forces
Cited by in corpus (36)
- High Eccentricities and High Masses Characterize Gravitational-wave Captures in Galactic Nuclei as Seen by Earth-based Detectors
- Extreme mass ratio inspirals and tidal disruption events in nuclear clusters. I. Time dependent rates
- Stellar Distributions Around a Supermassive Black Hole: Strong Segregation Regime Revisited
- Capture of stars into gaseous discs around massive black holes: Alignment, circularization and growth
- Evidence for the preferential disruption of moderately massive stars by supermassive black holes
- Primordial Black Holes as Dark Matter: Constraints From Compact Ultra-Faint Dwarfs
- Tidal disruption events in post-starburst galaxies: the importance of a complete stellar mass function
- Partial stellar tidal disruption events and their rates
- Revisit the rate of tidal disruption events: the role of the partial tidal disruption event
- Little Red Dots Are Nurseries of Massive Black Holes
- Rates of Stellar Tidal Disruption Events around Intermediate-Mass Black Holes
- Redshift evolution of primordial black hole merger rate
- Mapping the Galactic centre's dark cluster via Resonant Relaxation
- The evolution of circumstellar discs in the Galactic Centre: an application to the G-clouds
- Generation of gravitational waves and tidal disruptions in clumpy galaxies
- Examining the effects of dark matter spikes on eccentric intermediate mass ratio inspirals using N-body simulations
- Fast Multipole Methods for -body Simulations of Collisional Star Systems
- Demographics of Tidal Disruption Events with L-Galaxies: I. Volumetric TDE rates and the abundance of Nuclear Star Clusters
- Influence of early dark matter halos on the primordial black holes merger rate
- Hanging on the cliff: Extreme mass ratio inspiral formation with local two-body relaxation and post-Newtonian dynamics
- Forming Young and Hypervelocity Stars in the Galactic Centre via Tidal Disruption of a Molecular Cloud
- Evolution of Massive Black Hole Binaries in Collisionally Relaxed Nuclear Star Clusters -- Impact of Mass Segregation
- Young stellar cluster dilution near supermassive black holes: the impact of Vector Resonant Relaxation on neighbour separation
- Parameter Distributions of Binary Black Hole Mergers Near Supermassive Black Holes as Seen by Advanced Gravitational Wave Detectors
- Exploring the origin of stars on bound and unbound orbits causing tidal disruption events
- The Merger Rate of Black Holes in a Primordial Black Hole Cluster
- The S stars' zone of avoidance in the Galactic center
- Astrophysics with the Laser Interferometer Space Antenna
- Energy Flux and Particle Flux in Steady-State Solutions of Nuclear Star Clusters
- Self-consistent Solutions of Evolving Nuclear Star Clusters with Two-Dimensional Monte-Carlo Dynamical Simulations
- Dynamical evolution of a cluster of primordial black holes
- KRIOS: A new basis-expansion -body code for collisional stellar dynamics
- Evolution of the cluster of primordial black holes within the Fokker-Planck approach
- Dynamics and merger rate of primordial black holes in a cluster
- The Delay Time Distribution of Tidal Disruption Events
- Global Well-Posedness of a Nonlinear Fokker-Planck Type Model of Grain Growth