An improved effective-one-body model of spinning, nonprecessing binary black holes for the era of gravitational-wave astrophysics with advanced detectors
arXiv:1611.03703 · doi:10.1103/PhysRevD.95.044028
Abstract
We improve the accuracy of the effective-one-body (EOB) waveforms that were employed during the first observing run of Advanced LIGO for binaries of spinning, nonprecessing black holes by calibrating them to a set of 141 numerical-relativity (NR) waveforms. The NR simulations expand the domain of calibration towards larger mass ratios and spins, as compared to the previous EOBNR model. Merger-ringdown waveforms computed in black-hole perturbation theory for Kerr spins close to extremal provide additional inputs to the calibration. For the inspiral-plunge phase, we use a Markov-chain Monte Carlo algorithm to efficiently explore the calibration space. For the merger-ringdown phase, we fit the NR signals with phenomenological formulae. After extrapolation of the calibrated model to arbitrary mass ratios and spins, the (dominant-mode) EOBNR waveforms have faithfulness --- at design Advanced-LIGO sensitivity --- above against all the NR waveforms, including 16 additional waveforms used for validation, when maximizing only on initial phase and time. This implies a negligible loss in event rate due to modeling for these binary configurations. We find that future NR simulations at mass ratios and double spin will be crucial to resolve discrepancies between different ways of extrapolating waveform models. We also find that some of the NR simulations that already exist in such region of parameter space are too short to constrain the low-frequency portion of the models. Finally, we build a reduced-order version of the EOBNR model to speed up waveform generation by orders of magnitude, thus enabling intensive data-analysis applications during the upcoming observation runs of Advanced LIGO.
27 pages, 15 figures
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- Numerical-Relativity-Informed Effective-One-Body model for Black-Hole-Neutron-Star Mergers with Higher Modes and Spin Precession
- Ensemble of Deep Convolutional Neural Networks for real-time gravitational wave signal recognition
- Ringdown amplitudes of nonspinning eccentric binaries
- Upgraded waveform model of eccentric binary black hole based on effective-one-body-numerical-relativity for spin-aligned binary black holes
- Combining effective-one-body accuracy and reduced-order-quadrature speed for binary neutron star merger parameter estimation with machine learning
- Search for gravitational-wave bursts in the third Advanced LIGO-Virgo run with coherent WaveBurst enhanced by Machine Learning
- Parameterised population models of transient non-Gaussian noise in the LIGO gravitational-wave detectors
- Spectral Cauchy-characteristic extraction of the gravitational wave news function
- Targeted numerical simulations of binary black holes for GW170104
- Fast post-adiabatic waveforms in the time domain: Applications to compact binary coalescences in LIGO and Virgo
- Improving significance of binary black hole mergers in Advanced LIGO data using deep learning : Confirmation of GW151216
- An optimized PyCBC search for gravitational waves from intermediate-mass black hole mergers
- Numerical-relativity validation of effective-one-body waveforms in the intermediate-mass-ratio regime
- Third post-Newtonian dynamics for eccentric orbits and aligned spins in the effective-one-body waveform model SEOBNRv5EHM
- Systematic challenges for future gravitational wave measurements of precessing binary black holes
- The nonspinning binary black hole merger scenario revisited
- Eccentric or circular? A reanalysis of binary black hole gravitational wave events for orbital eccentricity signatures
- Systematic biases due to waveform mismodeling in parametrized post-Einsteinian tests of general relativity: The impact of neglecting spin precession and higher modes
- Testing regular black holes with X-ray and GW data
- Characterizing the observation bias in gravitational-wave detections and finding structured population properties
- Electromagnetic Chirps from Neutron Star-Black Hole Mergers
- Accelerating Multi-Model Bayesian Inference, Model Selection and Systematic Studies for Gravitational Wave Astronomy
- Observation of eccentric binary black hole mergers with second and third generation gravitational wave detector networks
- Model exploration in gravitational-wave astronomy with the maximum population likelihood
- The population of merging compact binaries inferred using gravitational waves through GWTC-3
- Gravitational wave surrogate model for spinning, intermediate mass ratio binaries based on perturbation theory and numerical relativity
- New self-consistent effective one-body theory for spinless binaries based on the post-Minkowskian approximation
- Statistical and systematic uncertainties in extracting the source properties of neutron star - black hole binaries with gravitational waves
- Modeling gravitational waves from exotic compact objects
- Black hole science with the Laser Interferometer Space Antenna
- Measuring the properties of nearly extremal black holes with gravitational waves
- Addressing the challenges of detecting time-overlapping compact binary coalescences
- Improved analysis of GW190412 with a precessing numerical relativity surrogate waveform model
- Self-consistent Effective-one-body theory for spinless binaries based on post-Minkowskian approximation I: Hamiltonian and decoupled equation for
- Fortifying gravitational-wave tests of general relativity against astrophysical assumptions
- Including mode mixing in a higher-multipole model for gravitational waveforms from nonspinning black-hole binaries
- Rapid search for massive black hole binary coalescences using deep learning
- Characterization of numerical relativity waveforms of eccentric binary black hole mergers
- Have hierarchical three-body mergers been detected by LIGO/Virgo?
- Theory-agnostic framework for inspiral tests of general relativity with higher-harmonic gravitational waves
- Searching for General Binary Inspirals with Gravitational Waves
- Adapting to noise distribution shifts in flow-based gravitational-wave inference
- Assessing and marginalizing over compact binary coalescence waveform systematics with RIFT
- Spin-orbit precession along eccentric orbits: improving the knowledge of self-force corrections and of their effective-one-body counterparts
- Search for binary black hole mergers in the third observing run of Advanced LIGO-Virgo using coherent WaveBurst enhanced with machine learning
- Rapid and accurate parameter inference for coalescing, precessing compact binaries
- Fast Parameter Estimation of Binary Mergers for Multimessenger Followup
- The MBTA Pipeline for Detecting Compact Binary Coalescences in the Fourth LIGO-Virgo-KAGRA Observing Run
- Applications of machine learning in gravitational wave research with current interferometric detectors
- Detectability of lensed gravitational waves in matched-filtering searches
- Self-consistent effective-one-body theory for spinning binaries based on post-Minkowskian approximation
- Exploring gravitational-wave detection and parameter inference using Deep Learning methods
- High-accuracy waveforms for black hole-neutron star systems with spinning black holes
- Testing GR with the Gravitational Wave Inspiral Signal GW170817
- Systematic bias due to eccentricity in parameter estimation for merging binary neutron stars
- High-accuracy simulations of highly spinning binary neutron star systems
- Localization of Binary Black-Hole Mergers with Known Inclination
- The gravitational capture of compact objects by massive black holes
- Detection and characterization of spin-orbit resonances in the advanced gravitational wave detectors era
- Rapid localization of gravitational wave sources from compact binary coalescences using deep learning
- Investigating the effect of in-plane spin directions for Precessing BBH systems
- The impact of selection biases on tests of general relativity with gravitational-wave inspirals
- Template bank for spinning compact binary mergers in the second observation run of Advanced LIGO and the first observation run of Advanced Virgo
- A blind search for a common signal in gravitational wave detectors
- Generic initial data for binary boson stars
- Post-Newtonian templates for gravitational waves from compact binary inspirals
- Understanding binary neutron star collisions with hypermodels
- Unbound motion on a Schwarzschild background: Practical approaches to frequency domain computations
- Time-domain phenomenological multipolar waveforms for aligned-spin binary black holes in elliptical orbits
- Analytical effective-one-body formalism for extreme-mass-ratio inspirals: eccentric orbits
- GW150914 peak frequency: a novel consistency test of strong-field General Relativity
- Tidal deformability and gravitational-wave phase evolution of magnetised compact-star binaries
- Deep Learning Model on Gravitational Waveforms in Merging and Ringdown Phases of Binary Black Hole Coalescences
- Parameter estimation with the current generation of phenomenological waveform models applied to the black hole mergers of GWTC-1
- New gravitational waveform model for precessing binary neutron stars with double-spin effects
- Advances in Machine and Deep Learning for Modeling and Real-time Detection of Multi-Messenger Sources
- Analysis of GWTC-3 with fully precessing numerical relativity surrogate models
- Gravitational waveforms of binary neutron star inspirals using post-Newtonian tidal splicing
- Incorporation of model accuracy in gravitational wave Bayesian inference
- Adding equatorial-asymmetric effects for spin-precessing binaries into the SEOBNRv5PHM waveform model
- Parametrized spin-precessing inspiral-merger-ringdown waveform model for tests of general relativity
- Strategies for the Follow-up of Gravitational Wave Transients with the Cherenkov Telescope Array
- Improved early warning of compact binary mergers using higher modes of gravitational radiation: A population study
- Gravitational wave memory of compact binary coalescence in the presence of matter effects
- Improved inspiral-merger-ringdown model for BBHs on elliptical orbits
- Merging black holes with Cauchy-characteristic matching: Computation of late-time tails
- Linear vs. nonlinear modeling of black hole ringdowns
- A Comprehensive Analysis of the Gravitational Wave Events with the Hilbert-Huang Transform: From Compact Binary Coalescence to Supernova
- Hierarchical approach to matched filtering using a reduced basis
- Detection of LIGO-Virgo binary black holes in the pair-instability mass gap
- A Thesaurus for Common Priors in Gravitational-Wave Astronomy
- Testing eccentric corrections to the radiation-reaction force in the test-mass limit of effective-one-body models
- Geometrized effective-one-body formalism for extreme-mass-ratio limits: Generic orbits
- Adaptive mesh refinement in binary black holes simulations
- Autoencoder-driven Spiral Representation Learning for Gravitational Wave Surrogate Modelling
- Observing the dark sector
- Universal phenomenological relations between spherical harmonic modes in non-precessing eccentric binary black hole merger waveforms
- Incorporating information from LIGO data quality streams into the PyCBC search for gravitational waves
- The failure of the Fisher Matrix when including tidal terms: Considering construction of template banks of tidally deformed binary neutron stars
- Inconsistent black hole kick estimates from gravitational-wave models
- Supporting High-Performance and High-Throughput Computing for Experimental Science
- GWDALI: A Fisher-matrix based software for gravitational wave parameter-estimation beyond Gaussian approximation
- Neural network time-series classifiers for gravitational-wave searches in single-detector periods
- Search for lensing signatures in the gravitational-wave observations from the first half of LIGO-Virgo's third observing run
- Localization of gravitational waves using machine learning
- Comparative study of 1D and 2D convolutional neural network models with attribution analysis for gravitational wave detection from compact binary coalescences
- Improving performance of SEOBNRv3 by 300x
- Accounting for numerical-relativity calibration uncertainty in gravitational-wave modeling and inference
- Improved parametrized test of general relativity using the IMRPhenomX waveform family: Including higher harmonics and precession
- Source localizations with the network of space-based gravitational wave detectors
- Testing alternative theories of gravity with space-based gravitational wave detectors
- Impact of anti-symmetric contributions to signal multipoles in the measurement of black-hole spins
- Role of dense matter in tidal deformations of inspiralling neutron stars and in gravitational waveform with unified equations of state
- A fully precessing higher-mode surrogate model of effective-one-body waveforms
- Robust inference of gravitational wave source parameters in the presence of noise transients using normalizing flows
- High-accuracy high-mass ratio simulations for binary neutron stars and their comparison to existing waveform models
- Nonorthogonal wavelet transformation for reconstructing gravitational wave signals
- Phenomenological model of gravitational self-force enhanced tides in inspiralling binary neutron stars
- Gravitational waveforms for high spin and high mass-ratio binary black holes: A synergistic use of numerical-relativity codes
- The SPIIR online coherent pipeline to search for gravitational waves from compact binary coalescences
- Efficient simulations of high-spin black holes with a new gauge
- Efficient Stochastic Template Bank using Inner Product Inequalities
- Determining the Hubble Constant with AGN-assisted Black Hole Mergers
- Gravitational spin-orbit dynamics at the fifth-and-a-half post-Newtonian order
- Second MAYA Catalog of Binary Black Hole Numerical Relativity Waveforms
- Peaking into the abyss: Characterizing the merger of equatorial-eccentric-geodesic plunges in rotating black holes
- Numerical relativity surrogate models for exotic compact objects: the case of head-on mergers of equal-mass Proca stars
- Interplay between numerical relativity and perturbation theory : finite size effects
- Confronting general relativity with principal component analysis: Simulations and results from GWTC-3 events
- Gravitational Wave Signal Extraction Against Non-Stationary Instrumental Noises with Deep Neural Network
- Waveform systematics in identifying strongly gravitationally lensed gravitational waves: Posterior overlap method
- Tests of General Relativity with GW230529: a neutron star merging with a lower mass-gap compact object
- Extending superposed harmonic initial data to higher spin
- Gravitational self-force corrections to tidal invariants for particles on circular orbits in a Kerr spacetime
- The curvature dependence of gravitational-wave tests of General Relativity
- Analytical determination of the periastron advance in spinning binaries from self-force computations
- Impact of gravitational waveform model systematics on the measurement of the Hubble constant
- Testing the Boundary-to-Bound Correspondence with Numerical Relativity
- Time delay interferometry with minimal null frequencies
- GPU-Accelerated Simulations of Isolated Black Holes
- Phenomenological gravitational waveform model of binary black holes incorporating horizon fluxes
- Initial Data and Eccentricity Reduction Toolkit for Binary Black Hole Numerical Relativity Waveforms
- Testing gravitational waveform models using angular momentum
- Optimizing the Placement of Numerical Relativity Simulations using a Mismatch Predicting Neural Network
- Interplay between numerical-relativity and black hole perturbation theory in the intermediate-mass-ratio regime
- Modeling matter(s) in SEOBNRv5THM: Generating fast and accurate effective-one-body waveforms for spin-aligned binary neutron stars
- Minimally-modeled search of higher multipole gravitational-wave radiation in compact binary coalescence
- Inferring Binary Properties from Gravitational Wave Signals
- Automated Evaluation of Environmental Coupling for Advanced LIGO Gravitational Wave Detections
- Energy flux and waveforms by coalescing spinless binary system in effective one-body theory
- On the approximate relation between black-hole perturbation theory and numerical relativity
- Fast and faithful interpolation of numerical relativity surrogate waveforms using meshfree approximation
- Observability of dynamical tides in merging eccentric neutron star binaries
- Waging a Campaign: Results from an Injection-Recovery Study involving 35 numerical Relativity Simulations and three Waveform Models
- Comparison and application of different post-Newtonian models for inspiralling stellar-mass binary black holes with space-based GW detectors
- Recent LIGO-Virgo discoveries
- Probing Particle Physics with Gravitational Waves
- Novel Deep Learning Approach to Detecting Binary Black Hole Mergers
- Advancing the Effective-One-Body Framework in the Test-Mass Limit
- Comparison of neural network architectures for feature extraction from binary black hole merger waveforms
- Trumpet Initial Data for Boosted Black Holes
- Probing Supermassive Black Hole Binaries with Orbital Resonances of Laser-Ranged Satellite
- Compact Binary Coalescence Gravitational Wave Signals Counting and Separation
- Suppressing data anomalies of gravitational reference sensors with time delay interferometry combinations
- Merging Black Holes: Assessing the Performance of Two Analytic Gravitational Waves Models
- The Response of Laser Interferometric Gravitational Wave Detectors Beyond the Eikonal Equation
- Accounting for the Known Unknowns: A Parametric Framework to Incorporate Systematic Waveform Errors in Gravitational-Wave Parameter Estimation
- Eccentric Pairs: Analytic Gravitational Waves from Binary Black Holes in Elliptic Orbits
- Optimizing the low-latency localization of gravitational waves
- First joint observation by the underground gravitational-wave detector, KAGRA, with GEO600
- Measurability of neutron star tidal deformability from merging neutron star-black hole binaries
- Asymptotically matched quasi-circular inspiral and transition-to-plunge in the small mass ratio expansion
- A Parametrized Test of General Relativity for LISA Massive Black Hole Binary Inspirals
- Gravitational-wave signatures of nonviolent nonlocality
- Ten years of extreme gravity tests of general theory of relativity with gravitational-wave observations
- Time delay interferometry with minimal null frequencies and shortened time span
- Modeling Relative Peak Times of Gravitational Wave Harmonics
- Learning and Interpreting Gravitational-Wave Features from CNNs with a Random Forest Approach
- A comprehensive look into the accuracy of SpEC binary black hole waveforms
- Using overlap of sky localization probability maps for filtering potentially lensed pairs of gravitational-wave signals
- A Mass-Shell Model of Compact Binary Coalescence
- Conditional Autoencoder for Generating Binary Neutron Star Waveforms with Tidal and Precession Effects
- Tidal deformations of compact objects and gravitational wave emission
- The impact of precession and higher-order multipoles for gravitational wave cosmological inference
- Inferences about the distribution, merger rate, and evolutionary processes of compact binaries from gravitational wave observations
- General Fourier expansion of post-Newtonian binary dynamics based on a quasi-Keplerian framework
- Analytical solutions of bound timelike geodesic orbits in effective-one-body frame
- Uniform Asymptotics of the Pseudo Wigner-Ville Distribution for Nonlinear Chirps
- Binary Black Hole Parameter Estimation with Hybrid CNN-Transformer Neural Networks
- Denoising gravitational wave with deep learning in the time-frequency domain
- -General-Relativity II: An Astrophysical Observable from a 2-Body system
- Deep Residual Error and Bag-of-Tricks Learning for Gravitational Wave Surrogate Modeling
- Constraining the Konoplya-Rezzolla-Zhidenko deformation parameters III: limits from stellar-mass black holes using gravitational-wave observations
- Exploiting Newton-factorized, 2PN-accurate, waveform multipoles in effective-one-body models for spin-aligned noncircularized binaries
- Assessment of Effective-One-Body Radiation Reactions for Generic Planar Orbits
- Using machine learning to auto-tune chi-squared tests for gravitational wave searches
- Waveforms and fluxes: Towards a self-consistent effective one body waveform model for nonprecessing, coalescing black-hole binaries for third generation detectors
- Applying higher-modes consistency test on GW190814 : lessons on no-hair theorem, nature of the secondary compact object and waveform modeling
- Constraints and detection capabilities of GW polarizations with space-based detectors in different TDI combinations
- The search of higher multipole radiation in gravitational waves from compact binary coalescences by a minimally-modelled pipeline
- Comparing numerical relativity and perturbation theory waveforms for a non-spinning equal-mass binary
- Sequence modeling of higher-order wave modes of binary black hole mergers
- Comparing eccentric waveform models based on post-Newtonian and effective-one-body approaches, over an observationally relevant parameter space
- Extract non-Gaussian Features in Gravitational Wave Observation Data Using Self-Supervised Learning
- Auto-encoder model for faster generation of effective one-body gravitational waveform approximations
- Reconsidering the consistent use of precessing, higher order multipole models for gravitational wave analyses