Computationally efficient models for the dominant and sub-dominant harmonic modes of precessing binary black holes
arXiv:2004.06503 · doi:10.1103/PhysRevD.103.104056
Abstract
We present IMRPhenomXPHM, a phenomenological frequency-domain model for the gravitational-wave signal emitted by quasi-circular precessing binary black holes, which incorporates multipoles beyond the dominant quadrupole in the precessing frame. The model is a precessing extension of IMRPhenomXHM (García-Quirós 2020), based on approximate maps between aligned-spin waveform modes in the co-precessing frame and precessing waveform modes in the inertial frame, which is commonly referred to as "twisting up" the non-precessing waveforms. IMRPhenomXPHM includes IMRPhenomXP as a special case, the restriction to the dominant quadrupole contribution in the co-precessing frame. We implement two alternative mappings, one based on a single-spin PN approximation, as used in IMRPhenomPv2 (Hannam 2013), and one based on the double-spin MSA approach (Chatziioannou 2017). We include a detailed discussion of conventions used in the description of precessing binaries and of all choices made in constructing the model. The computational cost of \phXPHM is further reduced by extending the interpolation technique of (C. García-Quirós 2020) to the Euler angles. The accuracy, speed, robustness and modularity of the IMRPhenomX family will make these models productive tools for gravitational wave astronomy in the current era of greatly increased number and diversity of detected events.
Version accepted for publication in Physical Review D
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- No model-independent evidence for a peak in binary black hole spin (mis)alignments
- Characterization of merging black holes with two precessing spins
- Multi-detector characterization of gravitational-wave burst tensor polarizations with the BayesWave algorithm
- Constraining Scalar Charge in Neutron Stars through Gravitational Wave Signals from NSBH Mergers
- -General-Relativity II: An Astrophysical Observable from a 2-Body system
- Assessment of normalizing flows for parameter estimation on time-frequency representations of gravitational-wave data
- AthenaK simulations of the binary black hole merger GW150914
- Waveform model for the spherical harmonic and the displacement memory contribution from precessing binary black holes
- Applying higher-modes consistency test on GW190814 : lessons on no-hair theorem, nature of the secondary compact object and waveform modeling
- GWCloud: a searchable repository for the creation and curation of gravitational-wave inference results
- Probing missing physics from inspiralling compact binaries via time-frequency tracks
- Deep Residual Error and Bag-of-Tricks Learning for Gravitational Wave Surrogate Modeling
- A Robust and Efficient F-statistic-based Framework for Consistent Bayesian Inference of Compact Binary Coalescences
- Hybrid waveforms for precessing quasi-circular binary systems
- Uncertainty in predicting the stochastic gravitational wave background from compact binary coalescences
- Waveforms and fluxes: Towards a self-consistent effective one body waveform model for nonprecessing, coalescing black-hole binaries for third generation detectors
- Gravitational lensing of gravitational waves: universal characteristics of strongly lensed memory waveforms
- The Missing Multipole Problem: Investigating biases from model starting frequency in gravitational-wave analyses
- Learning Post-Newtonian Corrections from Numerical Relativity
- Toward a Unified Understanding of the Dense Matter Equation of State
- Across the Universe: GW231123 as a magnified and diffracted black hole merger
- Can Eccentric Binary Black Hole Signals Mimic Gravitational-Wave Microlensing?
- Reconsidering the consistent use of precessing, higher order multipole models for gravitational wave analyses
- Constraining Lorentz and parity violations in gravity with multiband gravitational wave observations
- Plunge-Merger-Ringdown Tests of General Relativity with GW250114
- Identifying Host Galaxies of Binary Black Hole Mergers with Next-Generation Gravitational Wave Detector Networks
- Improved Constraints on Non-Kerr Deviations from Binary Black Hole Inspirals Using GWTC-4 Data
- Could the high-mass black holes from gravitational-wave observations be explained by lensing?
- Gravitational-wave astronomy requires population-informed parameter estimation
- Uniform Asymptotics of the Pseudo Wigner-Ville Distribution for Nonlinear Chirps
- Denoising gravitational wave with deep learning in the time-frequency domain
- A tapestry of gravitational waveforms to study black hole mergers
- Effectiveness of Stacks in the Stacked Hilbert-Huang Transform
- Fast Waveform Generation for Gravitational Waves using Evolutionary Algorithms