Dynamics of a Massive Black Hole at the Center of a Dense Stellar System
arXiv:astro-ph/0107287 · doi:10.1086/340224
Abstract
We develop a simple physical model to describe the dynamics of a massive point-like object, such as a black hole, near the center of a dense stellar system. It is shown that the total force on this body can be separated into two independent parts, one of which is the slowly varying influence of the aggregate stellar system, and the other being the rapidly fluctuating stochastic force due to discrete encounters with individual stars. For the particular example of a stellar system distributed according to a Plummer model, it is shown that the motion of the black hole is then similar to that of a Brownian particle in a harmonic potential, and we analyze its dynamics using an approach akin to Langevin's solution of the Brownian motion problem. The equations are solved to obtain the average values, time-autocorrelation functions, and probability distributions of the black hole's position and velocity. By comparing these results to N-body simulations, we demonstrate that this model provides a very good statistical description of the actual black hole dynamics. As an application of our model, we use our results to derive a lower limit on the mass of the black hole Sgr A* in the Galactic center.
27 pages, 4 figures. ApJ, in press (2002). New section with application to SgrA*
References in corpus (3)
Cited by in corpus (61)
- The Galactic Center Massive Black Hole and Nuclear Star Cluster
- Trigonometric Parallaxes of Massive Star Forming Regions: VI. Galactic Structure, Fundamental Parameters and Non-Circular Motions
- A geometric distance measurement to the Galactic Center black hole with 0.3% uncertainty
- The Proper Motion of Sgr A*: II. The Mass of Sgr A*
- The Centers of Early-Type Galaxies with HST. V. New WFPC2 Photometry
- Stellar Processes Near the Massive Black Hole in the Galactic Center
- Long Term Evolution of Massive Black Hole Binaries
- Runaway collisions in young star clusters. II. Numerical results
- New Limits on an Intermediate Mass Black Hole in Omega Centauri: II. Dynamical Models
- The uncertainty in Galactic parameters
- Rapid growth of seed black holes in the early universe by supra-exponential accretion
- The Proper Motion of Sagittarius A*: III. The Case for a Supermassive Black Hole
- A Radio-Selected Black Hole X-ray Binary Candidate in the Milky Way Globular Cluster M62
- Formation of Massive Black Holes in Galactic Nuclei: Runaway Tidal Encounters
- Massive Black Holes in Star Clusters. I. Equal-mass clusters
- A new Monte Carlo code for star cluster simulations: II. Central black hole and stellar collisions
- The MAVERIC Survey: Still No Evidence for Accreting Intermediate-mass Black Holes in Globular Clusters
- Long-Term Evolution of Massive Black Hole Binaries. II. Binary Evolution in Low-Density Galaxies
- No Evidence for Intermediate-Mass Black Holes in Globular Clusters: Strong Constraints from the JVLA
- Lopsided Spiral Galaxies
- A new channel to form IMBHs throughout cosmic time
- II. Accurate Positions and Proper Motions of Stellar SiO Masers near the Galactic Center
- Formation of galactic nuclei with multiple supermassive black holes at high redshifts
- Brownian Motion of Black Holes in Dense Nuclei
- Tidal Disruption Events and Gravitational Waves from Intermediate-mass Black Holes in Evolving Globular Clusters Across Space and Time
- A direct measurement of the distance to the Galactic center using the kinematics of bar stars
- Is there a Supermassive Black Hole at the Center of the Milky Way?
- Accretion of stars on to a massive black hole: A realistic diffusion model and numerical studies
- Tracing intermediate-mass black holes in the Galactic Centre
- Tidal disruption rate of stars by supermassive black holes obtained by direct N-body simulations
- Sgr A: a laboratory to measure the central black hole and cluster parameters
- Monte Carlo Simulations of Globular Cluster Evolution. VI. The Influence of an Intermediate Mass Black Hole
- Effects of Wandering on the Coalescence of Black Hole Binaries in Galactic Centers
- Localizing Sagittarius A* and M87 on Microarcsecond Scales with Millimeter VLBI
- A Deep Chandra X-ray Limit on the Putative IMBH in Omega Centauri
- The impact of stellar evolution on rotating star clusters: the gravothermal-gravogyro catastrophe and the formation of a bar of black holes
- Expectations for extreme-mass-ratio bursts from the Galactic Centre
- Collisional dynamics around binary black holes in galactic centers
- The Galactic Center as a laboratory for theories of gravity and dark matter
- Loss cone: past, present and future
- Stochastic oscillations of general relativistic disks
- Intermediate-Mass Black Holes in binary-rich star clusters
- The luminosity function of quasars by the Principle of Maximum Entropy
- Observational signatures of the black hole Mass Distribution in the Galactic Center
- Ultra-deep ATCA imaging of 47 Tucanae reveals a central compact radio source
- Astrometric Detection of Intermediate-Mass Black Holes At the Galactic Centre
- The Evolution of Kicked Stellar-Mass Black Holes in Star Cluster Environments
- The Position, Motion, and Mass of Sgr A*
- Rapidly varying accretion and AGN feedback
- The evolution of kicked stellar-mass black holes in star cluster environments II. Rotating star clusters
- Dynamics of intermediate mass black holes in globular clusters. Wander radius and anisotropy profiles
- Brownian motion of supermassive black holes in galaxy cores
- Introducing a new multi-particle collision method for the evolution of dense stellar systems. Crash-test N-body simulations
- Gravitational Brownian motion as inhomogeneous diffusion: black hole populations in globular clusters
- Compact stellar systems hosting an intermediate mass black hole: magnetohydrodynamic study of inflow-outflow dynamics
- A disturbance in the force. How force fluctuations hinder dynamical friction and induce core stalling
- Formation and Evolution of Supermassive Black Holes
- Analytical solutions for weak black hole kicks
- Giant molecular clouds in M 33: are they susceptible to dynamical friction?
- Taking apart the dynamical clock. Fat-tailed dynamical kicks shape the blue-straggler star bimodality
- Thermal equilibrium of an ideal gas in a free-floating box