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20242026
most citedEnhancing the SEOBNRv5 effective-one-body waveform model with second-order gravitational self-force fluxes

80 citations · 80 across the 1 of their papers we have counts for

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7 papers

gr-qc202680 cited

Enhancing the SEOBNRv5 effective-one-body waveform model with second-order gravitational self-force fluxes

Maarten van de Meent, Alessandra Buonanno, Deyan P. Mihaylov +7

The paper incorporates second‑order gravitational self‑force calculations into the SEOBNRv5 effective‑one‑body waveform model, improving its mode amplitudes, energy flux, and bindi…

gr-qc2026

Tidal perturbations of an extreme mass ratio inspiral around a Kerr black hole

Marta Cocco, Gianluca Grignani, Troels Harmark +3

We determine the metric of a Kerr black hole subject to external tidal fields using metric reconstruction techniques. Working within the Newman-Penrose formalism, we solve the Teuk…

gr-qc2025

Peaking into the abyss: Characterizing the merger of equatorial-eccentric-geodesic plunges in rotating black holes

Guglielmo Faggioli, Maarten van de Meent, Alessandra Buonanno +1

We study the gravitational waveforms generated by critical, equatorial plunging geodesics of the Kerr metric that start from an unstable-circular-orbit, which describe the test-mas…

gr-qc2025

Testing eccentric corrections to the radiation-reaction force in the test-mass limit of effective-one-body models

Guglielmo Faggioli, Maarten van de Meent, Alessandra Buonanno +3

In this work, we test an effective-one-body radiation-reaction force for eccentric planar orbits of a test mass in a Kerr background, which contains third-order post-Newtonian (PN)…

gr-qc2025

Environmental effects in extreme mass ratio inspirals: perturbations to the environment in Kerr

Conor Dyson, Thomas F. M. Spieksma, Richard Brito +2

Future gravitational wave observatories open a unique avenue to study the environments surrounding black holes. Intermediate or extreme mass ratio inspirals will spend thousands to…

gr-qc2024

Kerr-fully Diving into the Abyss: Analytic Solutions to Plunging Geodesics in Kerr

Conor Dyson, Maarten van de Meent

We present closed-form solutions for plunging geodesics in the extended Kerr spacetime using Boyer-Lindquist coordinates. Our solutions directly solve for the dynamics of generic t…