Steady state relativistic stellar dynamics around a massive black hole
arXiv:1508.01390 · doi:10.3847/0004-637X/820/2/129
Abstract
A massive black hole (MBH) consumes stars whose orbits evolve into the small phase-space volume of unstable orbits, the "loss-cone", which take them directly into the MBH, or close enough to interact strongly with it. The resulting phenomena: tidal heating and tidal disruption, binary capture and hyper-velocity star ejection, gravitational wave (GW) emission by inspiraling compact remnants, or hydrodynamical interactions with an accretion disk, are of interest as they can produce observable signatures and thereby reveal the existence of the MBH, affect its mass and spin evolution, probe strong gravity, and provide information on stars and gas near the MBH. The continuous loss of stars and the processes that resupply them shape the central stellar distribution. We investigate relativistic stellar dynamics near the loss-cone of a non-spinning MBH in steady-state analytically and by Monte Carlo simulations of the diffusion of the orbital parameters. These take into account Newtonian mass precession due to enclosed stellar mass, in-plane precession due to general relativity, dissipation by GW, uncorrelated two-body relaxation, correlated resonant relaxation (RR) and adiabatic invariance due to secular precession, using a rigorously derived description of correlated post-Newtonian dynamics in the diffusion limit. We argue that general maximal entropy considerations strongly constrain orbital diffusion in steady-state, irrespective of the relaxation mechanism. We identify the exact phase-space separatrix between plunges and inspirals, predict their steady-state rates, and verify they are robust under a wide range of assumptions. We derive the dependence of the rates on the mass of the MBH, show that the contribution of RR is small, and discuss special cases where unquenched RR in restricted volumes of phase-space may affect the steady-state substantially.
30 pages, 20 figures, submitted to ApJ. Fixed a numeric typo (section 6.1) in the discussion of the diffusion coefficients and their fluctuation-dissipation relations
References in corpus (8)
- Intermediate and Extreme Mass-Ratio Inspirals -- Astrophysics, Science Applications and Detection using LISA
- Dynamical evolution of the young stars in the Galactic center: N-body simulations of the S-stars
- A numerical study of vector resonant relaxation
- Resonant relaxation near a massive black hole: the dependence on eccentricity
- Relativistic dynamics of stars near a supermassive black hole
- The statistical mechanics of relativistic orbits around a massive black hole
- Gravitational Encounters and the Evolution of Galactic Nuclei. I. Method
- Gravitational Encounters and the Evolution of Galactic Nuclei. II. Classical and Resonant Relaxation
Cited by in corpus (74)
- Science with the space-based interferometer LISA. V: Extreme mass-ratio inspirals
- Formation and Evolution of Compact Object Binaries in AGN Disks
- Stellar Dynamics and Stellar Phenomena Near A Massive Black Hole
- Eccentric Black Hole Gravitational-Wave Capture Sources in Galactic Nuclei: Distribution of Binary Parameters
- Formation Rate of Extreme Mass Ratio Inspirals in Active Galactic Nuclei
- The impact of vector resonant relaxation on the evolution of binaries near a massive black hole: implications for gravitational wave sources
- An Overabundance of Black Hole X-Ray Binaries in the Galactic Center from Tidal Captures
- Rates of Stellar Tidal Disruption
- Science with the TianQin observatory: Preliminary result on extreme-mass-ratio inspirals
- Wet Extreme Mass Ratio Inspirals May Be More Common For Spaceborne Gravitational Wave Detection
- Stellar Tidal Disruption Events in General Relativity
- Gravitational wave background from extreme mass ratio inspirals
- A New Type of Extreme-mass-ratio Inspirals Produced by Tidal Capture of Binary Black Holes
- The impact of mass segregation and star-formation on the rates of gravitational-wave sources from extreme mass ratio inspirals
- The Hills Mechanism and the Galactic Center S-stars
- Detection of astrophysical gravitational wave sources by TianQin and LISA
- Probing orbits of stellar mass objects deep in galactic nuclei with quasi-periodic eruptions
- Relativistic orbits around spinning supermassive black holes. Secular evolution to 4.5 post-Newtonian order
- The Combined Effects of Two-Body Relaxation Processes and the Eccentric Kozai-Lidov Mechanism on the EMRI Rate
- Steeper stellar cusps in galactic centers from binary disruption
- Analytic computation of the secular effects of encounters on a binary: features arising from second-order perturbation theory
- Extreme mass ratio inspirals and tidal disruption events in nuclear clusters. I. Time dependent rates
- Tidal disruption events, main-sequence extreme-mass ratio inspirals and binary star disruptions in galactic nuclei
- Scalar Resonant Relaxation of Stars Around a Massive Black Hole
- The Lunar Gravitational-wave Antenna: Mission Studies and Science Case
- Periodic accretion-powered flares from colliding EMRIs as TDE Imposters
- Probing orbits of stellar mass objects deep in galactic nuclei with quasi-periodic eruptions -- II: population analysis
- Relaxation in self-gravitating systems
- Stellar Dynamics around a Massive Black Hole II: Resonant Relaxation
- Can supernova kicks trigger EMRIs in the Galactic Centre?
- Gravitational-wave merging events from the dynamics of stellar mass binary black holes around the massive black hole in a galactic nucleus
- Vector Resonant Relaxation of Stars around a Massive Black Hole
- Massive binary star mergers in galactic nuclei: implications for blue stragglers, binary S-stars and gravitational waves
- Mass-gap extreme mass ratio inspirals
- The Thermodynamics of Rotating Black-Hole Star Clusters
- Extreme mass-ratio gravitational-wave sources: Mass segregation and post binary tidal-disruption captures
- Searching for Ultra-light Bosons and Constraining Black Hole Spin Distributions with Stellar Tidal Disruption Events
- Isotropic-Nematic Phase Transitions in Gravitational Systems II: Higher Order Multipoles
- A universal minimal mass scale for present-day central black holes
- Embers of Active Galactic Nuclei: Tidal Disruption Events and Quasiperiodic Eruptions
- Stellar Collisions in Galactic Nuclei: Impact on Destructive Events Near a Supermassive Black Hole
- The secular evolution of discrete quasi-Keplerian systems. I. Kinetic theory of stellar clusters near black holes
- Dynamics around supermassive black holes: Extreme mass-ratio inspirals as gravitational-wave sources
- Recurrent Neutrino Emission from Supermassive Black Hole Mergers
- Resonant relaxation in globular clusters
- Mapping the Galactic centre's dark cluster via Resonant Relaxation
- Observational signatures of the black hole Mass Distribution in the Galactic Center
- Slowly Decaying Ringdown of a Rapidly Spinning Black Hole: Probing the No-Hair Theorem by Small Mass-Ratio Mergers with LISA
- The implications of stochastic gas torques for asymmetric binaries in the LISA band
- Secular Dynamics around a Supermassive Black Hole via Multipole Expansion
- Constraints on the origins of hypervelocity stars: velocity distribution, mergers and star-formation history
- Segregation and Collisions in Galactic Nuclei: Rates of Destructive Events Near a Supermassive Black Hole
- Jetted Tidal Disruptions of Stars as a Flag of Intermediate Mass Black Holes at High Redshifts
- Order-disorder phase transition in black-hole star clusters -- III. A mono-energetic cluster
- Order-disorder phase transition in black-hole star clusters. II. A scale-free cluster
- Hanging on the cliff: Extreme mass ratio inspiral formation with local two-body relaxation and post-Newtonian dynamics
- EMRIs and the relativistic loss-cone: The curious case of the fortunate coincidence
- Tidal disruption rates in non-spherical galactic nuclei formed by galaxy mergers
- Secondary spins of extreme mass ratio inspirals: A probe to the formation channels
- The secular evolution of discrete quasi-Keplerian systems. II. Application to a multi-mass axisymmetric disc around a supermassive black hole
- Young stellar cluster dilution near supermassive black holes: the impact of Vector Resonant Relaxation on neighbour separation
- Diffusion and mixing in globular clusters
- The S stars' zone of avoidance in the Galactic center
- Astrophysics with the Laser Interferometer Space Antenna
- The former companion of the hyper-velocity star S5-HVS1
- Double progenitor origin of the S-star cluster
- Non-resonant relaxation of anisotropic globular clusters
- Gravitational waves from an eccentric population of primordial black holes orbiting Sgr A
- On the Missing Red Giants near the Galactic Center
- Non-resonant relaxation of rotating globular clusters
- Co-evolution of Nuclear Star Clusters and Massive Black Holes: Extreme Mass-Ratio Inspirals
- Linear response of rotating and flattened stellar clusters: the oblate Kuzmin-Kutuzov Stäckel family
- Disks of Stars in the Galactic center triggered by Tidal Disruption Events
- Extreme Mass Ratio Inspirals in Light of Quasi-periodic Eruptions: Milli-Hertz Gravitational Wave Background