Adiabatic waveforms for extreme mass-ratio inspirals via multivoice decomposition in time and frequency
arXiv:2102.02713 · doi:10.1103/PhysRevD.103.104014
Abstract
We compute adiabatic waveforms for extreme mass-ratio inspirals (EMRIs) by "stitching" together a long inspiral waveform from a sequence of waveform snapshots, each of which corresponds to a particular geodesic orbit. We show that the complicated total waveform can be regarded as a sum of "voices." Each voice evolves in a simple way on long timescales, a property which can be exploited to efficiently produce waveform models that faithfully encode the properties of EMRI systems. We look at examples for a range of different orbital geometries: spherical orbits, equatorial eccentric orbits, and one example of generic (inclined and eccentric) orbits. To our knowledge, this is the first calculation of a generic EMRI waveform that uses strong-field radiation reaction. We examine waveforms in both the time and frequency domains. Although EMRIs evolve slowly enough that the stationary phase approximation (SPA) to the Fourier transform is valid, the SPA calculation must be done to higher order for some voices, since their instantaneous frequency can change from chirping forward () to chirping backward (). The approach we develop can eventually be extended to more complete EMRI waveform models, for example to include effects neglected by the adiabatic approximation such as the conservative self force and spin-curvature coupling.
31 pages, 17 figures. Update: corrected a sign error in a term in Eq. (B5). This factor was correct in the related code, it was purely a typo in the manuscript. An erratum to PRD has been submitted. Many thanks to Angelica Albertini for bringing this error to our attention. Update 2: corrected a missing factor of in Eq. (3.30)
References in corpus (13)
- Two timescale analysis of extreme mass ratio inspirals in Kerr. I. Orbital Motion
- Gravitational wave snapshots of generic extreme mass ratio inspirals
- Gravitational radiation reaction and inspiral waveforms in the adiabatic limit
- Osculating orbits in Schwarzschild spacetime, with an application to extreme mass-ratio inspirals
- Towards adiabatic waveforms for inspiral into Kerr black holes: II. Dynamical sources and generic orbits
- The Overlap of Numerical Relativity, Perturbation Theory and Post-Newtonian Theory in the Binary Black Hole Problem
- Computing inspirals in Kerr in the adiabatic regime. I. The scalar case
- Forced motion near black holes
- Evolution of small-mass-ratio binaries with a spinning secondary
- Fast Frequency-domain Waveforms for Spin-Precessing Binary Inspirals
- Extreme mass ratio inspirals on the equatorial plane in the adiabatic order
- The transition from adiabatic inspiral to geodesic plunge for a compact object around a massive Kerr black hole: Generic orbits
- Gravitational wave templates from Extreme Mass Ratio Inspirals
Cited by in corpus (87)
- FastEMRIWaveforms: New tools for millihertz gravitational-wave data analysis
- The Science of the Einstein Telescope
- Adiabatic waveforms from extreme-mass-ratio inspirals: an analytical approach
- Probing astrophysical environment with eccentric extreme mass-ratio inspirals
- Effective one-body model for extreme-mass-ratio spinning binaries on eccentric equatorial orbits: testing radiation reaction and waveform
- Extreme mass-ratio inspirals in ultra-light dark matter
- Defining eccentricity for gravitational wave astronomy
- Assessing the detectability of the secondary spin in extreme mass-ratio inspirals with fully-relativistic numerical waveforms
- Gravitational Wave Astronomy With TianQin
- Waveform uncertainty quantification and interpretation for gravitational-wave astronomy
- Detecting Gravitational-waves from Extreme Mass Ratio Inspirals using Convolutional Neural Networks
- Comparing second-order gravitational self-force and effective one body waveforms from inspiralling, quasi-circular and nonspinning black hole binaries II: the large-mass-ratio case
- Eccentric binary black holes: Comparing numerical relativity and small mass-ratio perturbation theory
- Eccentric self-forced inspirals into a rotating black hole
- Fast and Fourier: Extreme Mass Ratio Inspiral Waveforms in the Frequency Domain
- Towards a gravitational self force-informed effective-one-body waveform model for nonprecessing, eccentric, large-mass-ratio inspirals
- Non-local parameter degeneracy in the intrinsic space of gravitational-wave signals from extreme-mass-ratio inspirals
- Evidence for eccentricity in the population of binary black holes observed by LIGO-Virgo-KAGRA
- Extreme mass-ratio inspiral and waveforms for a spinning body into a Kerr black hole via osculating geodesics and near-identity transformations
- Prospects for determining the nature of the secondaries of extreme mass-ratio inspirals using the spin-induced quadrupole deformation
- Importance of tidal resonances in extreme-mass-ratio inspirals
- Modeling transient resonances in extreme-mass-ratio inspirals
- On Detecting Equatorial Symmetry Breaking with LISA
- Extreme Love in the SPA: constraining the tidal deformability of supermassive objects with extreme mass ratio inspirals and semi-analytical, frequency-domain waveforms
- Analytic solutions for the motion of spinning particles near spherically symmetric black holes and exotic compact objects
- Gravitational wave from extreme mass-ratio inspirals as a probe of extra dimensions
- Exploring waveforms with non-GR deviations for extreme mass-ratio inspirals
- Adiabatic equatorial inspirals of a spinning body into a Kerr black hole
- Numerical-relativity validation of effective-one-body waveforms in the intermediate-mass-ratio regime
- Extreme-mass-ratio burst detection with TianQin
- Self-force framework for transition-to-plunge waveforms
- The Gravitational Wave Universe Toolbox: A software package to simulate observation of the Gravitational Wave Universe with different detectors
- Prospects of detecting deviations to Kerr geometry with radiation reaction effects in EMRIs
- Impact of relativistic waveforms in LISA's science objectives with extreme-mass-ratio inspirals
- Identification of Gravitational-waves from Extreme Mass Ratio Inspirals
- Spinning particles near Kerr black holes: Orbits and gravitational-wave fluxes through the Hamilton-Jacobi formalism
- Self-forced inspirals with spin-orbit precession
- Rapid determination of LISA sensitivity to extreme mass ratio inspirals with machine learning
- Orbital eccentricity in general relativity from catastrophe theory
- Fast inspirals and the treatment of orbital resonances
- Applying the effective-source approach to frequency-domain self-force calculations for eccentric orbits
- Highly eccentric EMRI waveforms via fast self-forced inspirals
- BHPWAVE: An adiabatic gravitational waveform model for compact objects undergoing quasi-circular inspirals into rotating massive black holes
- A one-stop function for gravitational-wave detection, identification and inference
- Action-Angle formalism for extreme mass ratio inspirals in Kerr spacetime
- Improving the Cosmological Constraints by Inferring the Formation Channel of Extreme-mass-ratio Inspirals
- Testing gravity with Extreme-Mass-Ratio Inspirals
- Dynamical quasinormal mode excitation
- Influence of mass-ratio corrections in extreme-mass-ratio inspirals for testing general relativity
- Recipes for computing radiation from a Kerr black hole using a generalized Sasaki-Nakamura formalism: Homogeneous solutions
- Post-adiabatic waveform-generation framework for asymmetric precessing binaries
- Second-order gravitational self-force in a highly regular gauge: Covariant and coordinate punctures
- Divergences in gravitational-wave emission and absorption from extreme mass ratio binaries
- Relativistic model of binary extreme-mass-ratio inspiral systems and their gravitational radiation
- Worldtube excision method for intermediate-mass-ratio inspirals: scalar-field model in 3+1 dimensions
- Peaking into the abyss: Characterizing the merger of equatorial-eccentric-geodesic plunges in rotating black holes
- Worldtube excision method for intermediate-mass-ratio inspirals: scalar-field toy model
- Resonant excitation of eccentricity in spherical extreme-mass-ratio inspirals
- Approach to the separatrix with eccentric orbits
- EMRI_MC: A GPU-based Python code for Bayesian inference of EMRI waveforms
- Post-Newtonian theory-inspired framework for characterizing eccentricity in gravitational waveforms
- Eccentricity distribution of extreme mass ratio inspirals
- Gravitational wave fluxes on generic orbits in near-extreme Kerr spacetime: higher spin and large eccentricity
- Gravitational waves from quasielliptic compact binaries in scalar-tensor theory to one-and-a-half post-Newtonian order
- Analytical model of precessing binaries using post-Newtonian theory in the extreme mass-ratio limit I: General Formalism
- Simple, efficient method of calculating the Detweiler-Whiting singular field to very high order
- Imprints of extra dimensions in eccentric extreme-mass-ratio inspirals gravitational waveforms
- Systematic errors in fast relativistic waveforms for Extreme Mass Ratio Inspirals
- Cumulative effect of orbital resonances in extreme-mass-ratio inspirals
- Spherical inspirals of spinning bodies into Kerr black holes
- Parametric solutions to the Kerr separatrix
- Toward relativistic inspirals into black holes surrounded by matter
- Probing Kalb-Ramond field with extreme mass ratio inspirals
- A note on the conversion of orbital angles for extreme mass ratio inspirals
- Analytic solutions for the motion of spinning particles near brane-world black hole
- Extreme mass-ratio inspirals and extra dimensions: Insights from modified Teukolsky framework
- Impact of mass transfer on the orbital evolution of a white dwarf close to an intermediate-mass black hole
- Relieving scale disparity in binary black hole simulations
- Constants of motion in gravitational self-force theory
- Estimating High-Order Time Derivatives of Kerr Orbital Functionals
- Secular evolution of orbital parameters for general bound orbits in Kerr spacetime
- Extreme mass ratio inspirals into black holes surrounded by matter: Resonance crossings
- Observing GW190521-like binary black holes and their environment with LISA
- Precisely computing bound orbits of spinning bodies around black holes I: General framework and results for nearly equatorial orbits
- Particles with precessing spin in Kerr spacetime: analytic solutions for eccentric orbits and homoclinic motion near the equatorial plane
- When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals
- Exploiting Newton-factorized, 2PN-accurate, waveform multipoles in effective-one-body models for spin-aligned noncircularized binaries