Two-harmonic approximation for gravitational waveforms from precessing binaries
Explore this paper's citation graph
- Type
- article
- Published
- 2019-08-15
- Cited by
- 39
- References
- 98
- Access
- Open access
- OpenAlex
- https://openalex.org/W2967001827
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:201058482
Keywords
Physics, Precession, Angular momentum, Gravitational wave, Waveform
References
- Development of a Physical-Template Search for Gravitational Waves from Spinning Compact-Object Binaries with LIGO.
- Frequency-domain gravitational waves from nonprecessing black-hole binaries. II. A phenomenological model for the advanced detector era
- Nonspinning searches for spinning binaries in ground-based detector data: Amplitude and mismatch predictions in the constant precession cone approximation
- Parameter estimation of gravitational waves from precessing black hole-neutron star inspirals with higher harmonics
- Data formats for numerical relativity waves
- Multi-timescale analysis of phase transitions in precessing black-hole binaries
- Simple model of complete precessing black-hole-binary gravitational waveforms.
- PARAMETER ESTIMATION ON GRAVITATIONAL WAVES FROM NEUTRON-STAR BINARIES WITH SPINNING COMPONENTS
- A more effective coordinate system for parameter estimation of precessing compact binaries from gravitational waves
- A coherent triggered search for single-spin compact binary coalescences in gravitational wave data
- Spin-induced orbital precession and its modulation of the gravitational waveforms from merging binaries.
- A template bank to search for gravitational waves from inspiralling compact binaries: I. Physical models
- Gravitational waves from inspiraling compact binaries: Parameter estimation using second-post-Newtonian waveforms.
- Bayesian coherent analysis of in-spiral gravitational wave signals with a detector network
- Investigating the effect of precession on searches for neutron-star-black- hole binaries with Advanced LIGO
- Measuring coalescing massive binary black holes with gravitational waves: The impact of spin-induced precession
- Geometric approach to the precession of compact binaries
- Precession during merger: Strong polarization changes are observationally accessible features of strong-field gravity during binary black hole merger
- Searching for gravitational waves from binary coalescence
- Parameter estimation for compact binaries with ground-based gravitational-wave observations using the LALInference software library
Cited by
- When will we observe binary black holes precessing?
- Searching for ultralight bosons within spin measurements of a population of binary black hole mergers
- Statistical and systematic uncertainties in extracting the source properties of neutron star-black hole binaries with gravitational waves
- Measuring gravitational-wave higher-order multipoles
- Identifying when precession can be measured in gravitational waveforms
- GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run
- BayesWave analysis pipeline in the era of gravitational wave observations
- A generalized precession parameter χp to interpret gravitational-wave data
- Parameter estimation bias from overlapping binary black hole events in second generation interferometers
- Evidence for subdominant multipole moments and precession in merging black-hole-binaries from GWTC-2.1
- Toward inference of overlapping gravitational-wave signals
- Assessing the model waveform accuracy of gravitational waves
- Accelerating multimodel Bayesian inference, model selection, and systematic studies for gravitational wave astronomy
- General-relativistic precession in a black-hole binary
- Fast non-Markovian sampler for estimating gravitational-wave posteriors
- Parametrizing gravitational-wave polarizations
- Simple parameter estimation using observable features of gravitational-wave signals
- Gravitational-wave template banks for novel compact binaries
- Observability of spin precession in the presence of a black-hole remnant kick
- Searching for gravitational-wave signals from precessing black hole binaries with the GstLAL pipeline
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