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Binary-black-hole orbits precess when the black-hole spins are mis-aligned with the binary's orbital angular momentum.
Multipole Expansions of Gravitational Radiation
K. S. Thorne · 1980
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Spin induced orbital precession and its modulation of the gravitational wave forms from merging binaries
Theocharis A. Apostolatos, Curt Cutler, Gerald J. Sussman, and Kip S. Thorne · 1994
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Gravitational waves from merging compact binaries: How accurately can one extract the binary’s parameters from the inspiral wave form?
Curt Cutler and Eanna E. Flanagan · 1994
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Coalescing binary systems of compact objects to postNewtonian 5/2 order. 5. Spin effects
Lawrence E. Kidder · 1995
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Search templates for gravitational waves from precessing, inspiraling binaries
T. A. Apostolatos · 1995
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Gravitational waves from inspiraling compact binaries: Parameter estimation using second postNewtonian wave forms
Eric Poisson and Clifford M. Will · 1995
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Search templates for gravitational waves from inspiraling binaries: Choice of template spacing
Benjamin J. Owen · 1996
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Measuring gravitational waves from binary black hole coalescences: 2. The Waves’ information and its extraction, with and without templates
Eanna E. Flanagan and Scott A. Hughes · 1998
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Quasi-normal modes of stars and black holes
Kostas D. Kokkotas and Bernd G. Schmidt · 1999
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Gravitational waves from inspiraling compact binaries: Validity of the stationary phase approximation to the Fourier transform
Serge Droz, Daniel J. Knapp, Eric Poisson, and Benjamin J. Owen · 1999
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Matched filtering of gravitational waves from inspiraling compact binaries: Computational cost and template placement
Benjamin J. Owen and B. S. Sathyaprakash · 1999
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Accuracy requirements for the calculation of gravitational waveforms from coalescing compact binaries in numerical relativity
Mark A. Miller · 2005
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χ 2 {\chi}^{2} time-frequency discriminator for gravitational wave detection
Bruce Allen · 2005
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Detecting gravitational waves from precessing binaries of spinning compact objects: Adiabatic limit
Alessandra Buonanno, Yan-bei Chen, and Michele Vallisneri · 2006
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A Template bank to search for gravitational waves from inspiralling compact binaries. I. Physical models
S. Babak, R. Balasubramanian, D. Churches, T. Cokelaer, and B. S. Sathyaprakash · 2006
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A Physical template family for gravitational waves from precessing binaries of spinning compact objects: Application to single spin binaries
Yi Pan, Alessandra Buonanno, Yan-bei Chen, and Michele Vallisneri · 2006
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Data formats for numerical relativity waves
P. Ajith, et al · 2007
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Parameter estimation of spinning binary inspirals using Markov-chain Monte Carlo
Marc van der Sluys, et al · 2008
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Measuring coalescing massive binary black holes with gravitational waves: The Impact of spin-induced precession
Ryan N. Lang and Scott A. Hughes · 2008
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Development of a Physical-Template Search for Gravitational Waves from Spinning Compact-Object Binaries with LIGO
Diego Fazi · 2009
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Bayesian coherent analysis of in-spiral gravitational wave signals with a detector network
J. Veitch and A. Vecchio · 2010
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Triangulation of gravitational wave sources with a network of detectors
Stephen Fairhurst · 2011
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A coherent triggered search for single spin compact binary coalescences in gravitational wave data
I. W. Harry and S. Fairhurst · 2011
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A geometric approach to the precession of compact binaries
Michael Boyle, Robert Owen, and Harald P. Pfeiffer · 2011
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A targeted coherent search for gravitational waves from compact binary coalescences
Ian W. Harry and Stephen Fairhurst · 2011
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Testing general relativity with gravitational waves: a reality check
Michele Vallisneri · 2012
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Nonspinning searches for spinning binaries in ground-based detector data: Amplitude and mismatch predictions in the constant precession cone approximation
Duncan A. Brown, Andrew Lundgren, and R. O’Shaughnessy · 2012
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Towards models of gravitational waveforms from generic binaries: A simple approximate mapping between precessing and non-precessing inspiral signals
Patricia Schmidt, Mark Hannam, and Sascha Husa · 2012
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FINDCHIRP: An Algorithm for detection of gravitational waves from inspiraling compact binaries
Bruce Allen, Warren G. Anderson, Patrick R. Brady, Duncan A. Brown, and Jolien D. E. Creighton · 2012
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Degeneracy between mass and spin in black-hole-binary waveforms
Emily Baird, Stephen Fairhurst, Mark Hannam, and Patricia Murphy · 2013
Cited alongside, same era.
When can gravitational-wave observations distinguish between black holes and neutron stars?
Mark Hannam, Duncan A. Brown, Stephen Fairhurst, Chris L. Fryer, and Ian W. Harry · 2013
Cited alongside, same era.
Precession during merger: Strong polarization changes are observationally accessible features of strong-field gravity during binary black hole merger
R. O’Shaughnessy, L. London, J. Healy, and D. Shoemaker · 2013
Cited alongside, same era.
Searching for gravitational waves from binary coalescence
S. Babak et al · 2013
Cited alongside, same era.
Simple Model of Complete Precessing Black-Hole-Binary Gravitational Waveforms
Mark Hannam, et al · 2014
Cited alongside, same era.
Parameter estimation for binary black holes with networks of third generation gravitational-wave detectors
Salvatore Vitale and Matthew Evans · 2017
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Validating the effective-one-body model of spinning, precessing binary black holes against numerical relativity
Stanislav Babak, Andrea Taracchini, and Alessandra Buonanno · 2017
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Distinguishing Spin-Aligned and Isotropic Black Hole Populations With Gravitational Waves
Will M. Farr, et al · 2017
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Analysis Framework for the Prompt Discovery of Compact Binary Mergers in Gravitational-wave Data
Cody Messick et al · 2017
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Tito Dal Canton and Ian W. Harry · 2017
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Andrea Taracchini et al · 2014
Cited alongside, same era.
Measuring the spin of black holes in binary systems using gravitational waves
Salvatore Vitale, Ryan Lynch, John Veitch, Vivien Raymond, and Riccardo Sturani · 2014
Cited alongside, same era.
Parameter estimation of gravitational waves from precessing black hole-neutron star inspirals with higher harmonics
R. O’Shaughnessy, et al · 2014
Cited alongside, same era.
A more effective coordinate system for parameter estimation of precessing compact binaries from gravitational waves
Benjamin Farr, Evan Ochsner, Will M. Farr, and Richard O’Shaughnessy · 2014
Cited alongside, same era.
Single-spin precessing gravitational waveform in closed form
A. Lundgren and R. O’Shaughnessy · 2014
Cited alongside, same era.
Investigating the effect of precession on searches for neutron-star-black-hole binaries with Advanced LIGO
Ian W. Harry, et al · 2014
Cited alongside, same era.
Distinguishing black-hole spin-orbit resonances by their gravitational-wave signatures
Davide Gerosa, Richard O’Shaughnessy, Michael Kesden, Emanuele Berti, and Ulrich Sperhake · 2014
Cited alongside, same era.
Detecting binary compact-object mergers with gravitational waves: Understanding and Improving the sensitivity of the PyCBC search
Alexander H. Nitz, Thomas Dent, Tito Dal Canton, Stephen Fairhurst, and Duncan A. Brown · 2017
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Determining the population properties of spinning black holes
Colm Talbot and Eric Thrane · 2017
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Where Are LIGO’s Big Black Holes?
Maya Fishbach and Daniel E. Holz · 2017
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Binary Black Hole Mergers in the first Advanced LIGO Observing Run
B. P. Abbott et al · 2018
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Constraining black-hole spins with gravitational wave observations
Vaibhav Tiwari, Stephen Fairhurst, and Mark Hannam · 2018
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Precessional dynamics of black hole triples: binary mergers with near-zero effective spin
Fabio Antonini, Carl L. Rodriguez, Cristobal Petrovich, and Caitlin L. Fischer · 2018
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A Triple Origin for the Heavy and Low-Spin Binary Black Holes Detected by LIGO/Virgo
Carl L. Rodriguez and Fabio Antonini · 2018
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Debnandini Mukherjee, et al · 2018
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Using Spin to Understand the Formation of LIGO and Virgo’s Black Holes
Ben Farr, Daniel E. Holz, and Will M. Farr · 2018
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Does the Black Hole Merger Rate Evolve with Redshift?
Maya Fishbach, Daniel E. Holz, and Will M. Farr · 2018
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GWTC-1: A Gravitational-Wave Transient Catalog of Compact Binary Mergers Observed by LIGO and Virgo during the First and Second Observing Runs
B. P. Abbott et al · 2019
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Binary Black Hole Population Properties Inferred from the First and Second Observing Runs of Advanced LIGO and Advanced Virgo
B. P. Abbott et al · 2019
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PyCBC Inference: A Python-based parameter estimation toolkit for compact binary coalescence signals
C. M. Biwer, et al · 2019
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Constraining the Inclinations of Binary Mergers from Gravitational-wave Observations
Samantha A. Usman, Joseph C. Mills, and Stephen Fairhurst · 2019
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Surrogate models for precessing binary black hole simulations with unequal masses
Vijay Varma, et al · 2019
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Phenomenological model for the gravitational-wave signal from precessing binary black holes with two-spin effects
Sebastian Khan, Katerina Chatziioannou, Mark Hannam, and Frank Ohme · 2019
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When will we observe binary black holes precessing?
Stephen Fairhurst, Rhys Green, Mark Hannam, and Charlie Hoy · 2019
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Parallelized Inference for Gravitational-Wave Astronomy
Colm Talbot, Rory Smith, Eric Thrane, and Gregory B. Poole · 2019
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Reconstructing phenomenological distributions of compact binaries via gravitational wave observations
Daniel Wysocki, Jacob Lange, and Richard O’Shaughnessy · 2019
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BILBY: A user-friendly Bayesian inference library for gravitational-wave astronomy
Gregory Ashton et al · 2019
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Including higher order multipoles in gravitational-wave models for precessing binary black holes
Sebastian Khan, Frank Ohme, Katerina Chatziioannou, and Mark Hannam · 2020
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Let’s twist again: computationally efficient models for the dominant and sub-dominant harmonic modes of precessing binary black holes
Geraint Pratten et al · 2020
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A semianalytic fisher matrix for precessing binaries with a single significant spin
Richard O’Shaughnessy, Prakash Nepal, and Andrew Lundgren · 2020
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