Rates and Characteristics of Intermediate Mass Ratio Inspirals Detectable by Advanced LIGO
arXiv:0705.0285 · doi:10.1086/588246
Abstract
Gravitational waves (GWs) from the inspiral of a neutron star (NS) or stellar-mass black hole (BH) into an intermediate-mass black hole (IMBH) with mass between ~50 and ~350 solar masses may be detectable by the planned advanced generation of ground-based GW interferometers. Such intermediate mass ratio inspirals (IMRIs) are most likely to be found in globular clusters. We analyze four possible IMRI formation mechanisms: (1) hardening of an NS-IMBH or BH-IMBH binary via three-body interactions, (2) hardening via Kozai resonance in a hierarchical triple system, (3) direct capture, and (4) inspiral of a compact object from a tidally captured main-sequence star; we also discuss tidal effects when the inspiraling object is an NS. For each mechanism we predict the typical eccentricities of the resulting IMRIs. We find that IMRIs will have largely circularized by the time they enter the sensitivity band of ground-based detectors. Hardening of a binary via three-body interactions, which is likely to be the dominant mechanism for IMRI formation, yields eccentricities under 10^-4 when the GW frequency reaches 10 Hz. Even among IMRIs formed via direct captures, which can have the highest eccentricities, around 90% will circularize to eccentricities under 0.1 before the GW frequency reaches 10 Hz. We estimate the rate of IMRI coalescences in globular clusters and the sensitivity of a network of three Advanced LIGO detectors to the resulting GWs. We show that this detector network may see up to tens of IMRIs per year, although rates of one to a few per year may be more plausible. We also estimate the loss in signal-to-noise ratio that will result from using circular IMRI templates for data analysis and find that, for the eccentricities we expect, this loss is negligible.
Accepted for publication in ApJ; revised version reflects changes made to the article during the acceptance process
References in corpus (22)
- Intermediate and Extreme Mass-Ratio Inspirals -- Astrophysics, Science Applications and Detection using LISA
- Large Merger Recoils and Spin Flips From Generic Black-Hole Binaries
- Maximum gravitational recoil
- Total recoil: the maximum kick from nonspinning black-hole binary inspiral
- Supermassive recoil velocities for binary black-hole mergers with antialigned spins
- "Kludge" gravitational waveforms for a test-body orbiting a Kerr black hole
- Recoil Velocities from Equal-Mass Binary-Black-Hole Mergers
- Getting a kick out of numerical relativity
- Gravitational recoil from spinning binary black hole mergers
- Unequal Mass Binary Black Hole Plunges and Gravitational Recoil
- Search for gravitational waves from binary inspirals in S3 and S4 LIGO data
- Gravitational Recoil during Binary Black Hole Coalescence using the Effective One Body Approach
- Modeling kicks from the merger of non-precessing black-hole binaries
- Gravitomagnetic resonant excitation of Rossby modes in coalescing neutron star binaries
- Gravitational waves from intermediate-mass-ratio inspirals for ground-based detectors
- Ratios of star cluster core and half-mass radii: a cautionary note on intermediate-mass black holes in star clusters
- Observing IMBH-IMBH Binary Coalescences via Gravitational Radiation
- Star Clusters with Primordial Binaries: I. Dynamical Evolution of Isolated Models
- Star Clusters with Primordial Binaries: III. Dynamical Interaction between Binaries and an Intermediate Mass Black Hole
- Star Clusters with Primordial Binaries: II. Dynamical Evolution of Models in a Tidal Field
- Dynamical Interactions and the Black Hole Merger Rate of the Universe
- Gravitational recoil velocities from eccentric binary black hole mergers
Cited by in corpus (94)
- Quasinormal modes of black holes and black branes
- Predictions for the Rates of Compact Binary Coalescences Observable by Ground-based Gravitational-wave Detectors
- The Eccentric Kozai-Lidov Effect and Its Applications
- Gravitational waves from scattering of stellar-mass black holes in galactic nuclei
- Testing General Relativity with Low-Frequency, Space-Based Gravitational-Wave Detectors
- Two timescale analysis of extreme mass ratio inspirals in Kerr. I. Orbital Motion
- Resonant Post-Newtonian Eccentricity Excitation in Hierarchical Three-body Systems
- Rates of Compact Object Coalescences
- Parametrized tests of post-Newtonian theory using Advanced LIGO and Einstein Telescope
- Black hole growth through hierarchical black hole mergers in dense star clusters: implications for gravitational wave detections
- Compact Binary Coalescences in the Band of Ground-based Gravitational-Wave Detectors
- Extreme- and Intermediate-Mass Ratio Inspirals in Dynamical Chern-Simons Modified Gravity
- Populating the upper black hole mass gap through stellar collisions in young star clusters
- Binary compact object coalescence rates: The role of elliptical galaxies
- Gravitational-wave phasing for low-eccentricity inspiralling compact binaries to 3PN order
- Transient resonances in the inspirals of point particles into black holes
- The Formation and Gravitational-Wave Detection of Massive Stellar Black-Hole Binaries
- ELGAR -- a European Laboratory for Gravitation and Atom-interferometric Research
- Gravitational Waves and Intermediate-mass Black Hole Retention in Globular Clusters
- Orbital Evolution of Extreme-Mass-Ratio Black-Hole Binaries with Numerical Relativity
- Low-Frequency Terrestrial Gravitational-Wave Detectors
- Constraining the orbital eccentricity of inspiralling compact binary systems with Advanced LIGO
- Repeated mergers, mass-gap black holes, and formation of intermediate-mass black holes in nuclear star clusters
- Intermediate-mass-ratio black hole binaries: intertwining numerical and perturbative techniques
- Exploring intermediate and massive black-hole binaries with the Einstein Telescope
- Mid-band gravitational wave detection with precision atomic sensors
- Detecting Intermediate-Mass Ratio Inspirals From The Ground And Space
- Evolution of small-mass-ratio binaries with a spinning secondary
- Tidal Disruption Events and Gravitational Waves from Intermediate-mass Black Holes in Evolving Globular Clusters Across Space and Time
- The Close Stellar Companions to Intermediate Mass Black Holes
- Prospects for detecting gravitational waves at 5 Hz with ground-based detectors
- Eccentric black hole mergers and zoom-whirl behavior from elliptic inspirals to hyperbolic encounters
- Constraining the mass of the graviton using coalescing black-hole binaries
- The astrophysical science case for a decihertz gravitational-wave detector
- Search for Gravitational Waves from Intermediate Mass Binary Black Holes
- Inference on gravitational waves from coalescences of stellar-mass compact objects and intermediate-mass black holes
- A Unique Multi-Messenger Signal of QCD Axion Dark Matter
- Dark matter: an efficient catalyst for intermediate-mass-ratio-inspiral events
- Inspiral into Gargantua
- Merging stellar and intermediate-mass black holes in dense clusters: implications for LIGO, LISA and the next generation of gravitational wave detectors
- The Transient Gravitational-Wave Sky
- Verifying the no-hair property of massive compact objects with intermediate-mass-ratio inspirals in advanced gravitational-wave detectors
- Measuring intermediate mass black hole binaries with advanced gravitational wave detectors
- Eccentric binary black hole mergers in globular clusters hosting intermediate-mass black holes
- Systematic bias on the inspiral-merger-ringdown consistency test due to neglect of orbital eccentricity
- Dark matter minispike: a significant enhancement of eccentricity for intermediate-mass-ratio-inspirals
- Intermediate-Mass Black Holes as LISA Sources
- body dynamics of Intermediate mass-ratio inspirals in globular clusters
- Formation of Massive Black Holes in Dense Star Clusters. II. IMF and Primordial Mass Segregation
- Pseudospectral Collocation Methods for the Computation of the Self-Force on a Charged Particle: Generic Orbits around a Schwarzschild Black Hole
- Astrophysical science metrics for next-generation gravitational-wave detectors
- Angular emission patterns of remnant black holes
- Intermediate-mass-ratio-inspirals in the Einstein Telescope: I. Signal-to-noise ratio calculations
- Search for gravitational wave ringdowns from perturbed intermediate mass black holes in LIGO-Virgo data from 2005-2010
- Upgraded waveform model of eccentric binary black hole based on effective-one-body-numerical-relativity for spin-aligned binary black holes
- Importance of including small body spin effects in the modelling of intermediate mass-ratio inspirals. II Accurate parameter extraction of strong sources using higher-order spin effects
- Can we Detect Intermediate Mass Ratio Inspirals?
- Partial Tidal Disruption of Main-Sequence Stars by Intermediate-Mass Black Holes
- Gravitational waves from intermediate-mass black holes in young clusters
- Gravitational-wave captures by intermediate-mass black holes in galactic nuclei
- Secular evolution of compact binaries revolving around a spinning massive black hole
- Studies of waveform requirements for intermediate mass-ratio coalescence searches with advanced detectors
- Limits on Runaway Growth of Intermediate Mass Black Holes from Advanced LIGO
- The gravitational capture of compact objects by massive black holes
- Prospects for detection of intermediate-mass black holes in globular clusters using integrated-light spectroscopy
- Compact intermediate-mass black hole X-ray binaries: potential LISA sources?
- Constraining the cosmic merger history of intermediate-mass black holes with gravitational wave detectors
- Wandering off the centre: a characterization of the random motion of intermediate-mass black holes in star clusters
- Calibrating the binary black hole population in nuclear star clusters through tidal disruption events
- Spin and Quadrupole Couplings for High Spin Equatorial Intermediate Mass-ratio Coalescences
- Evaluating the Merger Rate of Binary Black Holes from Direct Captures and Third-Body Soft Interactions Using the Milky Way Globular Clusters
- Hunting intermediate-mass black holes with LISA binary radial velocity measurements
- Intermediate-mass black hole binary parameter estimation with next-generation ground-based detector networks
- Evolution of a black hole cluster in full general relativity
- Variability in Ultra-luminous X-ray Sources
- Globular clusters hosting intermediate-mass black-holes: no mass-segregation based candidates
- Octahedron configuration for a displacement noise-cancelling gravitational wave detector in space
- Menus for Feeding Black Holes
- Improving the stability of frequency dependent squeezing with bichromatic control of filter cavity length, alignment and incident beam pointing
- Self-forced evolutions of an implicit rotating source: A natural framework to model comparable and intermediate mass-ratio systems from inspiral through ringdown
- Astrophysics with the Laser Interferometer Space Antenna
- Intermediate mass ratio inspirals in dark matter halos
- Probing the formation of the seeds of supermassive black holes with gravitational waves
- On the Formation of GW190521-like Binary Black Hole Merger Systems
- Nonlinear noise regression in gravitational-wave detectors with convolutional neural networks
- Apparently ultra-long period radio sources from self-lensed pulsar-black hole binaries
- Preparations for detecting and characterizing gravitational-wave signals from binary black hole coalescences
- Gravitational wave inference of star cluster properties from intermediate-mass black hole mergers
- Einsteinian Manifolds and Gravitational Waves
- The Critical Coupling Likelihood Method: A new approach for seamless integration of environmental and operating conditions of gravitational wave detectors into gravitational wave searches
- Prospects for joint multiband detection of intermediate-mass black holes by LGWA and the Einstein Telescope
- Chirping compact stars: gravitational radiation and detection degeneracy with binary systems A conceptual pathfinder for space-based gravitational-wave observatories
- Merger rates of intermediate-mass black hole binaries in nuclear star clusters
- Search for gravitational waves from binary black hole inspiral, merger and ringdown