Triplets of supermassive black holes: Astrophysics, Gravitational Waves and Detection
arXiv:0910.1587 · doi:10.1111/j.1365-2966.2009.16104.x
Abstract
Supermassive black holes (SMBHs) found in the centers of many galaxies have been recognized to play a fundamental active role in the cosmological structure formation process. In hierarchical formation scenarios, SMBHs are expected to form binaries following the merger of their host galaxies. If these binaries do not coalesce before the merger with a third galaxy, the formation of a black hole triple system is possible. Numerical simulations of the dynamics of triples within galaxy cores exhibit phases of very high eccentricity (as high as ). During these phases, intense bursts of gravitational radiation can be emitted at orbital periapsis. This produces a gravitational wave signal at frequencies substantially higher than the orbital frequency. The likelihood of detection of these bursts with pulsar timing and the Laser Interferometer Space Antenna ({\it LISA}) is estimated using several population models of SMBHs with masses . Assuming a fraction of binaries in triple system, we find that few to few dozens of these bursts will produce residuals ns, within the sensitivity range of forthcoming pulsar timing arrays (PTAs). However, most of such bursts will be washed out in the underlying confusion noise produced by all the other 'standard' SMBH binaries emitting in the same frequency window. A detailed data analysis study would be required to assess resolvability of such sources. Implementing a basic resolvability criterion, we find that the chance of catching a resolvable burst at a one nanosecond precision level is 2-50%, depending on the adopted SMBH evolution model. On the other hand, the probability of detecting bursts produced by massive binaries (masses $\gtrsim 10^7\msun$) with {\it LISA} is negligible.
Accepted for publication by MNRAS, minor changes
References in corpus (9)
- Intermediate and Extreme Mass-Ratio Inspirals -- Astrophysics, Science Applications and Detection using LISA
- The stochastic gravitational-wave background from massive black hole binary systems: implications for observations with Pulsar Timing Arrays
- Gravitational waves from resolvable massive black hole binary systems and observations with Pulsar Timing Arrays
- The Redshift Evolution of Wet, Dry, and Mixed Galaxy Mergers from Close Galaxy Pairs in the DEEP2 Galaxy Redshift Survey
- The imprint of massive black hole formation models on the LISA data stream
- Dynamics of triple black hole systems in hierarchically merging massive galaxies
- The recycling of gas and metals in galaxy formation: predictions of a dynamical feedback model
- On the inconsistency between the black hole mass function inferred from M_bh-sigma and M_bh-L correlation
- Intermediate-mass black holes in colliding clusters: Implications for lower-frequency gravitational-wave astronomy
Cited by in corpus (64)
- The Astrophysics of Nanohertz Gravitational Waves
- Resonant Post-Newtonian Eccentricity Excitation in Hierarchical Three-body Systems
- Expected properties of the first gravitational wave signal detected with pulsar timing arrays
- The Gravitational Wave Background from Massive Black Hole Binaries in Illustris: spectral features and time to detection with pulsar timing arrays
- Rapid Eccentricity Oscillations and the Mergers of Compact Objects in Hierarchical Triples
- Gas driven massive black hole binaries: signatures in the nHz gravitational wave background
- Post-Newtonian Evolution of Massive Black Hole Triplets in Galactic Nuclei: IV. Implications for LISA
- Scattering experiments meet N-body I: a practical recipe for the evolution of massive black hole binaries in stellar environments
- Multimessenger astronomy with pulsar timing and X-ray observations of massive black hole binaries
- Electromagnetic Counterparts to Massive Black Hole Mergers
- Insights on the astrophysics of supermassive black hole binaries from pulsar timing observations
- The Formation of the First Massive Black Holes
- Post-Newtonian evolution of massive black hole triplets in galactic nuclei -- II. Survey of the parameter space
- Detection, Localization and Characterization of Gravitational Wave Bursts in a Pulsar Timing Array
- Gravitational wave background from extreme mass ratio inspirals
- Formation of galactic nuclei with multiple supermassive black holes at high redshifts
- Detection of eccentric supermassive black hole binaries with pulsar timing arrays: Signal-to-noise ratio calculations
- Post-Newtonian Evolution of Massive Black Hole Triplets in Galactic Nuclei: I. Numerical Implementation and Tests
- Fourier domain gravitational waveforms for precessing eccentric binaries
- Dynamical friction of massive objects in galactic centres
- Pulsars and Gravity
- Detection and localization of single-source gravitational waves with pulsar timing arrays
- Pulsar-timing arrays, astrometry, and gravitational waves
- Formation of LISA Black Hole Binaries in Merging Dwarf Galaxies: the Imprint of Dark Matter
- Gravitational-wave amplitudes for compact binaries in eccentric orbits at the third post-Newtonian order: Memory contributions
- Pulsars as gravitational wave detectors
- Interaction of Recoiling Supermassive Black Holes with Stars in Galactic Nuclei
- Cosmic Train Wreck by Massive Black Holes: Discovery of a kpc-Scale Triple Active Galactic Nucleus
- Gravitational Waves from Hierarchical Triple Systems with Kozai-Lidov Oscillation
- Gargantuan chaotic gravitational three-body systems and their irreversibility to the Planck length
- The Link Between Ejected Stars, Hardening and Eccentricity Growth of Super Massive Black Holes in Galactic Nuclei
- Massive Black Hole Binaries from the TNG50-3 Simulation: I. Coalescence and LISA Detection Rates
- Massive Black Hole Mergers with Orbital Information: Predictions from the ASTRID Simulation
- Optimizing Pulsar Timing Arrays to Maximize Gravitational Wave Single Source Detection: a First Cut
- Evidence from the Very Long Baseline Array that J1502SE/SW are Double Hotspots, not a Supermassive Binary Black Hole
- A Trio of Massive Black Holes Caught in the Act of Merging
- Secular evolution of compact binaries revolving around a spinning massive black hole
- Pulsar timing arrays and the challenge of massive black hole binary astrophysics
- About gravitational-wave generation by a three-body system
- Kinematic signatures of reverberation mapping of close binaries of supermassive black holes in active galactic nuclei III. The case of elliptical orbits
- Bayesian search for gravitational wave bursts in pulsar timing array data
- Binaries traveling through a gaseous medium: Dynamical drag forces and internal torques
- Constraints on Two Active Galactic Nuclei in the Merger Remnant COSMOS J100043.15+020637.2
- Dynamics of supermassive black hole triples in the ROMULUS25 cosmological simulation
- Resolving the nano-Hz gravitational wave sky: the detectability of eccentric binaries with PTA experiments
- Dynamics of Binary System around Supermassive Black Hole
- Evolution of binary supermassive black holes and the final-parsec problem
- Neural Networks unveiling the properties of gravitational wave background from massive black hole binaries
- Constraining the host galaxy halos of massive black holes from LISA event rates
- Triple and Quadruple Black Holes in the ASTRID Simulation at
- Unveiling the solution to the final-parsec problem by combining milli-Hertz gravitational-wave observation and AGN survey
- Gravitational Waves from Massive Black Hole Mergers in ASTRID: Predictions for LISA
- Realistic consecutive galaxy mergers form eccentric PTA sources
- Astrophysics with the Laser Interferometer Space Antenna
- Exploring the Dynamics of General Relativistic Binary-Single and Binary-Binary Encounters of Black Holes
- Very Large Array Multi-band Radio Imaging of the Triple AGN Candidate SDSS J0849+1114
- Tracking on-the-fly massive black hole binary evolution and coalescence in galaxy simulations: RAMCOAL
- Dynamical evolution timescales for the triple supermassive black hole system in NGC 6240
- Dissecting the nanohertz gravitational wave sky: Frequency-correlated anisotropy induced by eccentric supermassive black hole binaries
- Gravitational waves from an eccentric population of primordial black holes orbiting Sgr A
- Gravitational signatures beyond Newton: exploring hierarchical three-body dynamics
- Rapid sinking and efficient mergers of supermassive black holes in compact high-redshift galaxies
- SDSS J153231.80+420342.7: a triple black hole candidate with a close binary black hole
- The influence of spin in black hole triplets