Complete gravitational-waveform amplitude modes for quasi-circular compact binaries to the 3.5PN order
arXiv:2210.15602 · doi:10.1103/PhysRevD.107.044057
Abstract
We complete the computation of the gravitational waveform amplitude for non-spinning compact binaries to the third and a half post-Newtonian (PN) order in the quasi-circular case. This is done by performing a spin-weighted spherical harmonics decomposition of the amplitude. This computation is achieved using the post-Newtonian-Multipolar-post-Minkowskian formalism. The amplitude modes are written in a PN expanded way as well as a factorized form suitable for EOB template building. Combining this work with previous ones, we provide in the supplemental materials the expressions of the modes including all non-spinning and spinning effects to the 3.5PN order for non-precessing quasi-circular binaries.
21 pages
References in corpus (11)
- GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run
- Faithful Effective-One-Body waveforms of small-mass-ratio coalescing black-hole binaries
- Comparing Effective-One-Body gravitational waveforms to accurate numerical data
- Using Full Information When Computing Modes of Post-Newtonian Waveforms From Inspiralling Compact Binaries in Circular Orbit
- The third and a half post-Newtonian gravitational wave quadrupole mode for quasi-circular inspiralling compact binaries
- Non-linear multipole interactions and gravitational-wave octupole modes for inspiralling compact binaries to third-and-a-half post-Newtonian order
- The current-type quadrupole moment and gravitational-wave mode of compact binary systems at the third post-Newtonian order
- Spin contributions to the gravitational-waveform modes for spin-aligned binaries at the 3.5PN order
- The Quadrupole Moment of Compact Binaries to the Fourth post-Newtonian Order: From Source to Canonical Moment
- The Quadrupole Moment of Compact Binaries to the Fourth post-Newtonian Order: II. Dimensional Regularization and Renormalization
- The Quadrupole Moment of Compact Binaries to the Fourth post-Newtonian Order: I. Non-Locality in Time and Infra-Red Divergencies
Cited by in corpus (18)
- SEOBNRv5PHM: Next generation of accurate and efficient multipolar precessing-spin effective-one-body waveforms for binary black holes
- Laying the foundation of the effective-one-body waveform models SEOBNRv5: improved accuracy and efficiency for spinning non-precessing binary black holes
- The Science of the Einstein Telescope
- Gravitational-Wave Phasing of Quasi-Circular Compact Binary Systems to the Fourth-and-a-Half post-Newtonian Order
- Gravitational Wave Flux and Quadrupole Modes from Quasi-Circular Non-Spinning Compact Binaries to the Fourth Post-Newtonian Order
- Spin effects in gravitational waveforms and fluxes for binaries on eccentric orbits to the third post-Newtonian order
- Effective-One-Body Numerical-Relativity waveform model for Eccentric spin-precessing binary black hole coalescence
- ESIGMAHM: An Eccentric, Spinning inspiral-merger-ringdown waveform model with Higher Modes for the detection and characterization of binary black holes
- Third post-Newtonian dynamics for eccentric orbits and aligned spins in the effective-one-body waveform model SEOBNRv5EHM
- Gravitational memory: new results from post-Newtonian and self-force theory
- Multipole expansion at the level of the action in -dimensions
- Electromagnetic fields in compact binaries: post-Newtonian wave generation and application to double white dwarfs systems
- Gravitational radiation from inspiralling compact binaries to NLO in the Effective Field Theory approach
- Tidal contributions to the full gravitational waveform to the second-and-a-half post-Newtonian order
- Post-Newtonian Dynamics of Spinning Black Hole Binaries in Einstein-Scalar-Gauss-Bonnet Gravity
- Constants of motion in gravitational self-force theory
- Comparison of 4.5PN and 2SF gravitational energy fluxes from quasicircular compact binaries
- Hybrid waveforms for precessing quasi-circular binary systems