Secular Stellar Dynamics near a Massive Black Hole
arXiv:1010.1535 · doi:10.1088/0004-637X/738/1/99
Abstract
The angular momentum evolution of stars close to massive black holes (MBHs) is driven by secular torques. In contrast to two-body relaxation, where interactions between stars are incoherent, the resulting resonant relaxation (RR) process is characterized by coherence times of hundreds of orbital periods. In this paper, we show that all the statistical properties of RR can be reproduced in an autoregressive moving average (ARMA) model. We use the ARMA model, calibrated with extensive N-body simulations, to analyze the long-term evolution of stellar systems around MBHs with Monte Carlo simulations. We show that for a single-mass system in steady-state, a depression is carved out near an MBH as a result of tidal disruptions. Using Galactic center parameters, the extent of the depression is about 0.1 pc, of similar order to but less than the size of the observed "hole" in the distribution of bright late-type stars. We also find that the velocity vectors of stars around an MBH are locally not isotropic. In a second application, we evolve the highly eccentric orbits that result from the tidal disruption of binary stars, which are considered to be plausible precursors of the "S-stars" in the Galactic center. We find that RR predicts more highly eccentric (e > 0.9) S-star orbits than have been observed to date.
24 pages, 31 figures; final version as published in ApJ
References in corpus (19)
- The Galactic Center Massive Black Hole and Nuclear Star Cluster
- Starbursts near supermassive black holes: young stars in the Galactic Center, and gravitational waves in LISA band
- The structure of the nuclear stellar cluster of the Milky Way
- Stellar remnants in galactic nuclei: mass segregation
- Resonant relaxation and the warp of the stellar disc in the Galactic centre
- Kinematics of the old stellar population at the Galactic Center
- Dynamical evolution of the young stars in the Galactic center: N-body simulations of the S-stars
- On the nature of the fast moving star S2 in the Galactic Center
- Red giant stellar collisions in the Galactic Centre
- Binary dynamics near a massive black hole
- Explaining the Orbits of the Galactic Center S-Stars
- Resonant relaxation near a massive black hole: the dependence on eccentricity
- Gravitational wave bursts from the Galactic massive black hole
- Origin of the S Stars in the Galactic Center
- A Hybrid N-Body Code Incorporating Algorithmic Regularization and Post-Newtonian Forces
- Post-Newtonian N-body simulations
- Radial Velocities of Stars in the Galactic Center
- Effect of angular momentum distribution on gravitational loss-cone instability in stellar clusters around massive BH
- Ejection of Hyper-Velocity Stars from the Galactic Centre by Intermediate-Mass Black Holes
Cited by in corpus (71)
- Hydrodynamical Simulations to Determine the Feeding Rate of Black Holes by the Tidal Disruption of Stars: The Importance of the Impact Parameter and Stellar Structure
- Secular evolution of compact binaries near massive black holes: gravitational wave sources and other exotica
- Rates of Stellar Tidal Disruption as Probes of the Supermassive Black Hole Mass Function
- PS1-10jh: The Disruption of a Main-Sequence Star of Near-Solar Composition
- Stellar Populations in the Central 0.5 pc of the Galaxy II: The Initial Mass Function
- Finite, Intense Accretion Bursts from Tidal Disruption of Stars on Bound Orbits
- Stellar Dynamics and Stellar Phenomena Near A Massive Black Hole
- The Tidal Disruption of Giant Stars and Their Contribution to the Flaring Supermassive Black Hole Population
- Stellar Populations in the Central 0.5 pc of the Galaxy I: A New Method for Constructing Luminosity Functions and Surface-Density Profiles
- Modeling Dense Star Clusters in the Milky Way and Beyond with the Cluster Monte Carlo Code
- Tidal Disruption Event Host Galaxies in the Context of the Local Galaxy Population
- Steady state relativistic stellar dynamics around a massive black hole
- On the distribution of stellar remnants around massive black holes: slow mass segregation, star cluster inspirals and correlated orbits
- A numerical study of vector resonant relaxation
- Spoon-Feeding Giant Stars to Supermassive Black Holes: Episodic Mass Transfer from Evolving Stars and Their Contribution to the Quiescent Activity of Galactic Nuclei
- In situ formation of SgrA* stars via disk fragmentation: parent cloud properties and thermodynamics
- 3D stellar kinematics at the Galactic center: measuring the nuclear star cluster spatial density profile, black hole mass, and distance
- The Effect of Star--Disk Interactions on Highly Eccentric Stellar Orbits in Active Galactic Nuclei: A Disk Loss Cone and Implications for Stellar Tidal Disruption Events
- MMT Hypervelocity Star Survey. II. Five New Unbound Stars
- Relativity and the evolution of the Galactic center S-star orbits
- S-stars in the Galactic center and hypervelocity stars in the Galactic halo: two faces of the tidal breakup of stellar binaries by the central massive black hole?
- A new Monte Carlo method for dynamical evolution of non-spherical stellar systems
- The Hills Mechanism and the Galactic Center S-stars
- A rapid evolving region in the Galactic Center: Why S-stars thermalize and more massive stars are missing
- Tidal acceleration of black holes and superradiance
- Steeper stellar cusps in galactic centers from binary disruption
- Ejection and Capture Dynamics in Restricted Three-Body Encounters
- Constraining the dark cusp in the Galactic Center by long-period binaries
- Stellar Energy Relaxation around A Massive Black Hole
- Scalar Resonant Relaxation of Stars Around a Massive Black Hole
- Relativistic dynamics of stars near a supermassive black hole
- Revealing the Formation of the Milky Way Nuclear Star Cluster via Chemo-Dynamical Modeling
- On the origin of the B-stars in the Galactic center
- The statistical mechanics of relativistic orbits around a massive black hole
- Stellar Dynamics around a Massive Black Hole II: Resonant Relaxation
- The Keplerian three-body encounter I. Insights on the origin of the S-stars and the G-objects in the Galactic center
- Expectations for extreme-mass-ratio bursts from the Galactic Centre
- Vector Resonant Relaxation of Stars around a Massive Black Hole
- On the Existence of Pulsars in the Vicinity of the Massive Black Hole in the Galactic Center
- The Nature of Hypervelocity Stars and the Time Between Their Formation and Ejection
- HST Observations of the Stellar Distribution Near Sgr A*
- The Thermodynamics of Rotating Black-Hole Star Clusters
- On the Newtonian and Spin-induced Perturbations felt by the Stars Orbiting around the Massive Black Hole in the Galactic Center
- Gravitational Encounters and the Evolution of Galactic Nuclei. I. Method
- Depletion of bright red giants in the Galactic center during its active phases
- Gravitational Encounters and the Evolution of Galactic Nuclei. IV. Captures Mediated by Gravitational-Wave Energy Loss
- Hypervelocity Planets and Transits Around Hypervelocity Stars
- The influence of the secular perturbation of an intermediate-mass companion: I. Eccentricity excitation of disk stars at the Galactic center
- Evolution of growing black holes in axisymmetric galaxy cores
- Spin Evolution of Supermassive Black Holes and Galactic Nuclei
- Gravitational Encounters and the Evolution of Galactic Nuclei. II. Classical and Resonant Relaxation
- Secular Dynamical Anti-Friction in Galactic Nuclei
- Cosmological simulations of quasar fueling to sub-parsec scales using Lagrangian hyper-refinement
- The properties of hypervelocity stars and S-stars originating from an eccentric disc around a supermassive black hole
- The secular evolution of discrete quasi-Keplerian systems. I. Kinetic theory of stellar clusters near black holes
- Gravitational interactions of stars with supermassive black hole binaries. I. Tidal disruption events
- The Effect of General Relativistic Precession on Tidal Disruption Events from Eccentric Nuclear Disks
- Constraints on the Galactic Centre environment from \textit{Gaia} hypervelocity stars III: Insights on a possible companion to Sgr A*
- Mass ratio, the hills mechanism, and the galactic centre S-stars
- Secular Dynamics around a Supermassive Black Hole via Multipole Expansion
- Gravitational Encounters and the Evolution of Galactic Nuclei. III. Anomalous Relaxation
- The influence of the secular perturbation of an intermediate-mass companion: II. Ejection of hypervelocity stars from the Galactic Center
- Evolution of eccentric stellar disks around supermassive black holes: the complex disk disruption dynamics and the milliparsec stars
- The secular evolution of discrete quasi-Keplerian systems. II. Application to a multi-mass axisymmetric disc around a supermassive black hole
- Diffusion and mixing in globular clusters
- Sculpting the Stellar Cusp in the Galactic Center
- Astrophysics with the Laser Interferometer Space Antenna
- The former companion of the hyper-velocity star S5-HVS1
- The GWs from the S-stars revolving around the SMBH at Sgr A*
- Observational constraints on the formation and evolution of the Milky Way nuclear star cluster with Keck and Gemini
- On the Origin of Young Stars at the Galactic Center