Resummed energy loss in extreme-mass-ratio scattering using critical orbits
arXiv:2602.10089 · doi:10.1103/pxzz-dl2b
Abstract
Motivated by recent efforts to bridge between weak-field and strong-field descriptions of black-hole binary dynamics, we develop a resummation scheme for post-Minkowskian radiative observables in extreme-mass-ratio scattering, augmented with post-Newtonian terms. Specifically, we derive universal interpolation formulas for the total energy emitted in gravitational waves out to infinity and down the event horizon of the large black hole, valid to leading order in the small mass ratio. We test our formulas using numerical results from direct calculations in black hole perturbation theory. The central idea of our approach is to utilize as a strong-field diagnostic the known form of divergence in the radiated energy along geodesics near the parameter-space separatrix between scattering and plunge. The dominant, logarithmic term of this divergence can be expressed in terms of instantaneous energy fluxes calculated along the unstable circular geodesics that form the separatrix, fluxes that we obtain using interpolation of highly accurate numerical data. The same idea could be applied to bound-orbit radiative observables via either unbound-to-bound mapping or a direct resummation of bound-orbit post-Newtonian expressions.
12 pages, 8 figures + ancillary files attached and available at https://doi.org/10.5281/zenodo.18553926 ; v2: published version
References in corpus (33)
- Scattering Amplitudes and the Conservative Hamiltonian for Binary Systems at Third Post-Minkowskian Order
- Gravitational scattering, post-Minkowskian approximation and Effective One-Body theory
- Scattering Amplitudes and Conservative Binary Dynamics at
- Scattering Amplitudes, the Tail Effect, and Conservative Binary Dynamics at
- The Eikonal Approach to Gravitational Scattering and Radiation at
- Dynamics of Binary Systems to Fourth Post-Minkowskian Order from the Effective Field Theory Approach
- Radiative contribution to classical gravitational scattering at the third order in
- Conservative Dynamics of Binary Systems at Fourth Post-Minkowskian Order in the Large-eccentricity Expansion
- Radiation Reaction and Gravitational Waves at Fourth Post-Minkowskian Order
- Energetics of two-body Hamiltonians in post-Minkowskian gravity
- Gravitational Bremsstrahlung from Reverse Unitarity
- Black Hole Mergers and Unstable Circular Orbits
- Gravitational Waves from a Particle in Circular Orbits around a Schwarzschild Black Hole to the 22nd Post-Newtonian Order
- GW231123: a Binary Black Hole Merger with Total Mass 190-265
- Gravitational Waves from a Particle in Circular Orbits around a Rotating Black Hole to the 11th Post-Newtonian Order
- Emergence of Calabi-Yau manifolds in high-precision black hole scattering
- Strong-field scattering of two black holes: Numerical Relativity meets Post-Minkowskian gravity
- Classical Gravitational Observables from the Eikonal Operator
- From Boundary Data to Bound States III: Radiative Effects
- Radiated momentum and radiation-reaction in gravitational two-body scattering including time-asymmetric effects
- Boundary to bound dictionary for generic Kerr orbits
- Post-Minkowskian Theory Meets the Spinning Effective-One-Body Approach for Two-Body Scattering
- Gravitational Bound Waveforms from Amplitudes
- Scattering and dynamical capture of two black holes: synergies between numerical and analytical methods
- Black hole scattering near the transition to plunge: Self-force and resummation of post-Minkowskian theory
- Third order post-Newtonian gravitational radiation from two-body scattering: Instantaneous energy and angular momentum radiation
- Resumming Post-Minkowskian and Post-Newtonian gravitational waveform expansions
- Third post-Newtonian gravitational radiation from two-body scattering II. Hereditary Energy radiation
- The spinning self-force EFT: 1SF waveform recursion relation and Compton scattering
- Divergences in gravitational-wave emission and absorption from extreme mass ratio binaries
- Highly accurate simulations of asymmetric black-hole scattering and cross validation of effective-one-body models
- Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results
- The first law of binary black hole scattering