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Computationally efficient models for the dominant and subdominant harmonic modes of precessing binary black holes

G. PrattenC. García-QuirósM. ColleoniA. Ramos-BuadesH. EstellésM. Mateu-LucenaR. JaumeM. HaneyD. KeitelJonathan E. ThompsonS. Husa

Abstract

We present imrphenomxphm, a phenomenological frequency-domain model for the gravitational-wave signal emitted by quasicircular precessing binary black holes, which incorporates multipoles beyond the dominant quadrupole in the precessing frame. The model is a precessing extension of imrphenomxhm, [C. Garc\'{\i}a-Quir\'os et al., Phys. Rev. D 102, 064002 (2020)] based on approximate maps between aligned-spin waveform modes in the coprecessing frame and precessing waveform modes in the inertial frame, which is commonly referred to as ``twisting up'' the nonprecessing waveforms. imrphenomxphm includes imrphenomxp as a special case, the restriction to the dominant quadrupole contribution in the coprecessing frame. We implement two alternative mappings, one based on a single-spin post-Newtonian approximation, as used in imrphenompv2 [M. Hannam et al., Phys. Rev. Lett. 113, 151101 (2014).], and one based on the double-spin multiple scale analysis approach of [K. Chatziioannou et al., Phys. Rev. D 95, 104004 (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 imrphenomxphm is further reduced by extending the interpolation technique of [C. Garc\'{\i}a-Quir\'os et al., Classical Quant. Grav. 38, 015006 (2021).] 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.

Pulsars and Gravitational Waves ResearchAstrophysical Phenomena and ObservationsHigh-pressure geophysics and materialsPhysicsQuadrupoleGravitational waveBinary numberBlack hole (networking)WaveformMoment of inertiaChirpInertial frame of referenceClassical mechanics

Funding

  • National Science Foundation
  • Ministerio de Ciencia, Innovación y Universidades
  • Cardiff University
  • European Cooperation in Science and Technology
  • Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
  • Partnership for Advanced Computing in Europe AISBL
  • Generalitat Valenciana
  • Centre National de la Recherche Scientifique
  • Ministerio de Ciencia e Innovación
  • Barcelona Supercomputing Center
  • Universitat de les Illes Balears
  • Horizon 2020 Framework Programme
  • Science and Technology Facilities Council
  • Instituto Nazionale di Fisica Nucleare
  • European Regional Development Fund
  • Agencia Estatal de Investigación
  • Conselleria d'Educació, Investigació, Cultura i Esport
  • H2020 European Research Council
  • H2020 Marie Skłodowska-Curie Actions
Citations
506
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104
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References
Spin-<i>s</i> Spherical Harmonics and ð
Journal of Mathematical Physics · 1967 · 839 citations
Parameter estimation for compact binaries with ground-based gravitational-wave observations using the LALInference software library
Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D, Particles, fields, gravitation, and cosmology · 2015 · 922 citations
Gravitational waves from merging compact binaries: How accurately can one extract the binary’s parameters from the inspiral waveform?
Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fields · 1994 · 1,554 citations
Observation of Gravitational Waves from a Binary Black Hole Merger
Physical Review Letters · 2016 · 13,779 citations
Bilby: A User-friendly Bayesian Inference Library forGravitational-wave Astronomy
The Astrophysical Journal Supplement Series · 2019 · 1,006 citations
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