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Paper Citation Record · LEDGER

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results

As of 5 August 2026, this Paper Citation Record lists 100 of 125 outbound references and 6 inbound Pith citation observations for arXiv:2512.02274.

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pith.paper-citation-record.v1
2512.02274 v2

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measured 100 of 125 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-05-17T02:11:46.560266Z

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measured 6 of 6 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-03T08:40:26.784514Z

measured 0 of 1 external citation measurements

A source-named dated measurement, never combined with another source.

Source: pith, observed 2026-07-04T15:49:58.193892Z

Reference resolution

100 of 125 outbound references displayed

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  • verified fuzzy13
  • unresolved4
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Outbound references

Observation df95155c-0d74-43d9-a490-753c6fe695e7 · outbound

This paper cites I define the angular momentum of each body about the CoM viaL ∗ i =r ∗ i ×p ∗ i , wherer ∗ i is a radial three-vector connecting the body and the CoM.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results I define the angular momentum of each body about the CoM viaL ∗ i =r ∗ i ×p ∗ i , wherer ∗ i is a radial three-vector connecting the body and the CoM

Reference 1

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Observation 61400143-2dbb-402a-923d-e06a10785ffa · outbound

This paper cites The 1PN result was com- puted by Blanchet and Sch¨ afer [29] and the 2PN result was derived by Bini et al.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results The 1PN result was com- puted by Blanchet and Sch¨ afer [29] and the 2PN result was derived by Bini et al

Reference 2

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Observation e496c4d7-08a8-454c-acb1-8f05071838bc · outbound

This paper cites an unresolved cited work.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Unresolved cited work

Reference 3

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Observation aba7a84a-5d2b-4e60-9a43-dd4fe6b60689 · outbound

This paper cites It enters at 7PM order and is given by ∆EPM H = 5πm6 1m2 2 16b7 (21γ4 −14γ 2 + 1) p γ2 −1 +O(b −8).

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results It enters at 7PM order and is given by ∆EPM H = 5πm6 1m2 2 16b7 (21γ4 −14γ 2 + 1) p γ2 −1 +O(b −8)

Reference 4

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Observation e402a918-2187-4d03-acdc-bf0a3285f6f3 · outbound

This paper cites an unresolved cited work.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Unresolved cited work

Reference 5

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Observation 1502a32d-ed82-4944-b8a0-7903b577145b · outbound

This paper cites higher-order master function.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results higher-order master function

Reference 6

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Observation d617732e-2dd9-4e86-a913-ed801883e99f · outbound

This paper cites The outer boundary location,r out, is ad- justed to ensure that the boundary is in the wave- zone where the boundary condition expansion will converge.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results The outer boundary location,r out, is ad- justed to ensure that the boundary is in the wave- zone where the boundary condition expansion will converge

Reference 7

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Observation a9548de8-0580-4586-ae4f-7ba7e0baf83b · outbound

This paper cites (64) from the numerical boundary conditions tor=r min.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results (64) from the numerical boundary conditions tor=r min

Reference 8

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Observation de5f9a23-f658-4efa-8e0b-553b7ff42fa9 · outbound

This paper cites Zoom-Whirl.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Zoom-Whirl

Reference 9

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Observation 10b0e166-81f1-41ce-90f0-944bdcec23e4 · outbound

This paper cites Note for parabolic orbits the (b, v∞) is not defined asb→ ∞as the parabolic limit is approached.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Note for parabolic orbits the (b, v∞) is not defined asb→ ∞as the parabolic limit is approached

Reference 10

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Observation 11b756e6-5394-46ec-913f-402184d22a6e · outbound

This paper cites GWTC-4.0: Updating the Gravitational-Wave Transient Catalog with Observations from the First Part of the Fourth LIGO-Virgo-KAGRA Observing Run.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results GWTC-4.0: Updating the Gravitational-Wave Transient Catalog with Observations from the First Part of the Fourth LIGO-Virgo-KAGRA Observing Run

Reference 11

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Observation 0947e6fe-0f65-4edb-a598-2a0addc7ba1f · outbound

This paper cites Observing the Galaxy's massive black hole with gravitational wave bursts.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Observing the Galaxy's massive black hole with gravitational wave bursts

Reference 12

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Observation 96029631-26be-4c6d-a304-095c25951fcf · outbound

This paper cites Gravitational Wave Peeps from EMRIs and their Implication for LISA Signal Confusion Noise.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Gravitational Wave Peeps from EMRIs and their Implication for LISA Signal Confusion Noise

Reference 13

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Observation 60c1ecb5-7b0d-42bf-be98-ccc73629d924 · outbound

This paper cites Parameter estimation of gravitational waves from hyperbolic black hole encounters.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Parameter estimation of gravitational waves from hyperbolic black hole encounters

Reference 14

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Observation 03dd20d0-96ab-40d7-9908-b3924595f452 · outbound

This paper cites Effective one-body approach to general relativistic two-body dynamics.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Effective one-body approach to general relativistic two-body dynamics

Reference 15

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Observation 53d6e60a-7c5f-4bcc-a5a2-a96354c75b18 · outbound

This paper cites Laying the foundation of the effective-one-body waveform models SEOBNRv5: improved accuracy and efficiency for spinning non-precessing binary black holes.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Laying the foundation of the effective-one-body waveform models SEOBNRv5: improved accuracy and efficiency for spinning non-precessing binary black holes

Reference 16

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Observation b3b647c9-05c5-4331-b323-28f24e2f3f0f · outbound

This paper cites TEOBResumS: assessment of consistent next-to-quasicircular corrections and post-adiabatic approximation in multipolar binary black holes waveforms.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results TEOBResumS: assessment of consistent next-to-quasicircular corrections and post-adiabatic approximation in multipolar binary black holes waveforms

Reference 17

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Observation 19551c23-eb22-4d31-85be-09b89aa7b575 · outbound

This paper cites High-accuracy comparison of numerical relativity simulations with post-Newtonian expansions.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results High-accuracy comparison of numerical relativity simulations with post-Newtonian expansions

Reference 18

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Observation 87e7694b-88f7-41e3-95c5-dfaa1ebc96a4 · outbound

This paper cites Comparison between numerical-relativity and post-Newtonian waveforms from spinning binaries: the orbital hang-up case.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Comparison between numerical-relativity and post-Newtonian waveforms from spinning binaries: the orbital hang-up case

Reference 19

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Observation bb67043a-a31f-4bea-af2f-2ca87cb21e96 · outbound

This paper cites A consequence of the gravitational self-force for circular orbits of the Schwarzschild geometry.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results A consequence of the gravitational self-force for circular orbits of the Schwarzschild geometry

Reference 20

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Observation f23e81e7-bfd2-4793-9ddf-35d3e6eb0aaa · outbound

This paper cites Post-Newtonian and Numerical Calculations of the Gravitational Self-Force for Circular Orbits in the Schwarzschild Geometry.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Post-Newtonian and Numerical Calculations of the Gravitational Self-Force for Circular Orbits in the Schwarzschild Geometry

Reference 21

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Observation 1bfe07cc-0b0e-401f-9fff-1e1d28640ac8 · outbound

This paper cites Conservative self-force correction to the innermost stable circular orbit: comparison with multiple post-Newtonian-based methods.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Conservative self-force correction to the innermost stable circular orbit: comparison with multiple post-Newtonian-based methods

Reference 22

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Observation eaef48f9-7fde-40ae-b078-20e12351d63f · outbound

This paper cites Periastron Advance in Black-Hole Binaries.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Periastron Advance in Black-Hole Binaries

Reference 23

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Observation 55fde374-c58b-4064-bdda-4c002c75165e · outbound

This paper cites Gravitational self-torque and spin precession in compact binaries.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Gravitational self-torque and spin precession in compact binaries

Reference 24

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Observation a7eb7364-2d0c-40ac-bc5b-613e6e477898 · outbound

This paper cites The Overlap of Numerical Relativity, Perturbation Theory and Post-Newtonian Theory in the Binary Black Hole Problem.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results The Overlap of Numerical Relativity, Perturbation Theory and Post-Newtonian Theory in the Binary Black Hole Problem

Reference 25

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Observation 4ec17838-f145-4ed7-b4c6-107105301dfa · outbound

This paper cites Tidal invariants for compact binaries on quasi-circular orbits.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Tidal invariants for compact binaries on quasi-circular orbits

Reference 26

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Observation b88aa8f0-e4c8-4db4-9ad2-bbdca1d10dd7 · outbound

This paper cites Comparison Between Self-Force and Post-Newtonian Dynamics: Beyond Circular Orbits.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Comparison Between Self-Force and Post-Newtonian Dynamics: Beyond Circular Orbits

Reference 27

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Observation c8c4206a-460d-43f9-bb39-3cc8987a8052 · outbound

This paper cites Quasi-circular inspirals and plunges from non-spinning effective-one-body Hamiltonians with gravitational self-force information.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Quasi-circular inspirals and plunges from non-spinning effective-one-body Hamiltonians with gravitational self-force information

Reference 28

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Observation cd8cc987-5771-4877-b4a7-747e37d59d88 · outbound

This paper cites Energetics of two-body Hamiltonians in post-Minkowskian gravity.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Energetics of two-body Hamiltonians in post-Minkowskian gravity

Reference 29

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No event found in the named queried sources as of 2026-08-05T06:32:48.257954+00:00.

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Observation bef58dad-bf2a-41ae-83d1-da50874ff9b3 · outbound

This paper cites Comparison of post-Newtonian mode amplitudes with numerical relativity simulations of binary black holes.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Comparison of post-Newtonian mode amplitudes with numerical relativity simulations of binary black holes

Reference 30

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Observation 8fb28bce-0550-4e5d-ac3a-8168da8ca195 · outbound

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

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Enhancing the SEOBNRv5 effective-one-body waveform model with second-order gravitational self-force fluxes

Reference 31

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arxiv_id, observed 2026-07-17T01:20:32.101006Z

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Observation bbbab9ee-d521-4342-96f8-608897dc702d · outbound

This paper cites Leather, A.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Leather, A

Reference 32

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arxiv_id, observed 2026-05-17T02:13:52.363187Z

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Observation f791b9c5-cae9-41cd-9bcf-2f7c36e0a657 · outbound

This paper cites Gravitational scattering, post-Minkowskian approximation and Effective One-Body theory.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Gravitational scattering, post-Minkowskian approximation and Effective One-Body theory

Reference 33

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local_arxiv, observed 2026-05-17T02:13:52.223347Z

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Observation 01727690-d8ba-4580-801b-0b2d2e642a79 · outbound

This paper cites High-energy gravitational scattering and the general relativistic two-body problem.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results High-energy gravitational scattering and the general relativistic two-body problem

Reference 34

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local_arxiv, observed 2026-05-17T02:13:52.313392Z

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Observation ec1b0abe-95aa-4cbb-86a8-ddf536909afe · outbound

This paper cites The SAGEX Review on Scattering Amplitudes, Chapter 13: Post-Minkowskian expansion from Scattering Amplitudes.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results The SAGEX Review on Scattering Amplitudes, Chapter 13: Post-Minkowskian expansion from Scattering Amplitudes

Reference 35

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arxiv_id, observed 2026-05-17T02:13:52.322490Z

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Observation 511516c7-116a-4aa5-b026-9129a81aee52 · outbound

This paper cites The SAGEX Review on Scattering Amplitudes, Chapter 14: Classical Gravity from Scattering Amplitudes.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results The SAGEX Review on Scattering Amplitudes, Chapter 14: Classical Gravity from Scattering Amplitudes

Reference 36

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arxiv_id, observed 2026-05-17T02:13:52.289843Z

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No event found in the named queried sources as of 2026-08-05T06:32:48.257954+00:00.

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Observation b35369ab-0c61-4a1e-8b9e-1e30b0f804d1 · outbound

This paper cites Snowmass White Paper: Gravitational Waves and Scattering Amplitudes.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Snowmass White Paper: Gravitational Waves and Scattering Amplitudes

Reference 37

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arxiv_id, observed 2026-05-17T02:13:52.327007Z

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No event found in the named queried sources as of 2026-08-05T06:32:48.257954+00:00.

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Observation 38383590-632f-41d0-9224-b0a6bed768dc · outbound

This paper cites Emergence of Calabi-Yau manifolds in high-precision black hole scattering.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Emergence of Calabi-Yau manifolds in high-precision black hole scattering

Reference 38

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arxiv_id, observed 2026-05-17T02:13:52.294279Z

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Observation 230e6384-48c4-4551-a07b-25d834cd5966 · outbound

This paper cites Blanchet and G.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Blanchet and G

Reference 39

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Observation af1b5094-2619-468d-95e0-09349b8f40ee · outbound

This paper cites Sixth post-Newtonian nonlocal-in-time dynamics of binary systems.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Sixth post-Newtonian nonlocal-in-time dynamics of binary systems

Reference 40

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arxiv_id, observed 2026-05-17T02:13:52.274056Z

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Observation 9bef8e08-8f67-463c-a0c8-c6bf1b53d1d0 · outbound

This paper cites Third post-Newtonian gravitational radiation from two-body scattering II. Hereditary Energy radiation.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Third post-Newtonian gravitational radiation from two-body scattering II. Hereditary Energy radiation

Reference 41

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arxiv_id, observed 2026-05-17T02:13:52.335714Z

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Observation 920f174e-a88c-484e-85f2-7e560a05b4b3 · outbound

This paper cites Gravitational Bremsstrahlung from Reverse Unitarity.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Gravitational Bremsstrahlung from Reverse Unitarity

Reference 42

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arxiv_id, observed 2026-05-17T02:13:52.308750Z

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Observation 61b4b36f-2dd4-4d3a-ad15-5b83ba812b01 · outbound

This paper cites Radiation Reaction and Gravitational Waves at Fourth Post-Minkowskian Order.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Radiation Reaction and Gravitational Waves at Fourth Post-Minkowskian Order

Reference 43

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arxiv_id, observed 2026-05-17T02:13:52.468733Z

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Observation 0d2d043c-c87c-41e1-b438-4c678dfa1bb3 · outbound

This paper cites Classical Observables from the Exponential Representation of the Gravitational S-Matrix.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Classical Observables from the Exponential Representation of the Gravitational S-Matrix

Reference 44

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arxiv_id, observed 2026-05-17T02:13:52.317711Z

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Observation d1d37d4d-013d-46ca-b517-9bbedb15a4bd · outbound

This paper cites Horizon radiation reaction forces.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Horizon radiation reaction forces

Reference 45

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arxiv_id, observed 2026-05-17T02:13:52.256871Z

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Observation ae25600e-306b-4c83-bf51-7b698cd08d52 · outbound

This paper cites Absorptive Effects and Classical Black Hole Scattering.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Absorptive Effects and Classical Black Hole Scattering

Reference 46

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arxiv_id, observed 2026-05-17T02:13:52.344770Z

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Observation 454ec599-30c5-4d24-848d-f98676fff5db · outbound

This paper cites Third order post-Newtonian gravitational radiation from two-body scattering: Instantaneous energy and angular momentum radiation.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Third order post-Newtonian gravitational radiation from two-body scattering: Instantaneous energy and angular momentum radiation

Reference 47

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arxiv_id, observed 2026-05-17T02:13:52.348595Z

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Observation 77879a51-2968-4adc-ae90-903eb2f61bb3 · outbound

This paper cites Post-Minkowskian self-force in the low-velocity limit: scalar field scattering.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Post-Minkowskian self-force in the low-velocity limit: scalar field scattering

Reference 48

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arxiv_id, observed 2026-05-17T02:13:52.356124Z

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Observation 14d7e849-50b4-42a2-ada1-e073a5fa8ffd · outbound

This paper cites Scattering of a point mass by a Schwarzschild black hole: radiated energy and angular momentum.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Scattering of a point mass by a Schwarzschild black hole: radiated energy and angular momentum

Reference 49

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arxiv_id, observed 2026-05-17T02:13:52.352573Z

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Observation 4e73d7e9-b348-4ccc-b0f2-52ba975d1520 · outbound

This paper cites From Boundary Data to Bound States.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results From Boundary Data to Bound States

Reference 50

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arxiv_id, observed 2026-05-17T02:13:52.366505Z

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Observation 7fcadd6f-c59c-4dd9-89ff-1b51451b9b3e · outbound

This paper cites From Boundary Data to Bound States II: Scattering Angle to Dynamical Invariants (with Twist).

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results From Boundary Data to Bound States II: Scattering Angle to Dynamical Invariants (with Twist)

Reference 51

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arxiv_id, observed 2026-05-17T02:13:52.644850Z

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Observation 5d5f91ff-ae11-4541-8031-d5956865623a · outbound

This paper cites From Boundary Data to Bound States III: Radiative Effects.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results From Boundary Data to Bound States III: Radiative Effects

Reference 52

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arxiv_id, observed 2026-05-17T02:13:52.245937Z

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Observation 5ff0e1e5-1680-4f07-93fa-331e455266b4 · outbound

This paper cites Gravitational Bound Waveforms from Amplitudes.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Gravitational Bound Waveforms from Amplitudes

Reference 53

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arxiv_id, observed 2026-05-17T02:13:52.360128Z

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Observation 846f7fc6-34a6-4cf3-8867-f54ac0d3e105 · outbound

This paper cites Energetics and scattering of gravitational two-body systems at fourth post-Minkowskian order.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Energetics and scattering of gravitational two-body systems at fourth post-Minkowskian order

Reference 54

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arxiv_id, observed 2026-05-17T02:13:52.442978Z

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Observation fddf286b-4742-4e83-86a0-13a435bd97a6 · outbound

This paper cites Post-Minkowskian Theory Meets the Spinning Effective-One-Body Approach for Two-Body Scattering.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Post-Minkowskian Theory Meets the Spinning Effective-One-Body Approach for Two-Body Scattering

Reference 55

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arxiv_id, observed 2026-05-17T02:13:52.236240Z

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No event found in the named queried sources as of 2026-08-05T06:32:48.257954+00:00.

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Observation c2eb7359-6dd8-47b3-a4e8-cf2c743edd08 · outbound

This paper cites Strong-Field Scattering of Two Black Holes: Numerics Versus Analytics.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Strong-Field Scattering of Two Black Holes: Numerics Versus Analytics

Reference 56

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local_arxiv, observed 2026-05-17T02:13:52.380159Z

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Observation f30ffcef-3aa3-473c-905a-3d3e71e6f6b5 · outbound

This paper cites Strong-field scattering of two spinning black holes: Numerical Relativity versus post-Minkowskian gravity.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Strong-field scattering of two spinning black holes: Numerical Relativity versus post-Minkowskian gravity

Reference 57

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arxiv_id, observed 2026-05-17T02:13:52.410815Z

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Observation ad7b2261-0e13-4485-aa10-b703ec6d5df5 · outbound

This paper cites an unresolved cited work.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Unresolved cited work

Reference 58

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arxiv_id, observed 2026-05-17T02:13:52.420731Z

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No event found in the named queried sources as of 2026-08-05T06:32:48.257954+00:00.

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Observation 5c5e62fb-9582-4044-a0f3-479371c5ae4f · outbound

This paper cites an unresolved cited work.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Unresolved cited work

Reference 59

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arxiv_id, observed 2026-05-17T02:13:52.227905Z

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Observation ab93ec03-45b3-4a12-9c2f-b25550e1f727 · outbound

This paper cites Clark and G.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Clark and G

Reference 60

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arxiv_id, observed 2026-05-17T02:13:52.386218Z

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Observation 6d4b5585-4d35-4a75-acf6-1abc1c0b8bfb · outbound

This paper cites Spin-up and mass-gain in hyperbolic encounters of spinning black holes.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Spin-up and mass-gain in hyperbolic encounters of spinning black holes

Reference 61

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local_arxiv, observed 2026-05-17T02:13:52.555142Z

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No event found in the named queried sources as of 2026-08-05T06:32:48.257954+00:00.

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Observation c6ab802d-8ffc-4bad-93f2-9c6e05ca1a92 · outbound

This paper cites Testing the Boundary-to-Bound Correspondence with Numerical Relativity.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Testing the Boundary-to-Bound Correspondence with Numerical Relativity

Reference 62

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arxiv_id, observed 2026-05-17T02:13:52.611558Z

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Observation 3e0f44aa-9542-4e1d-867c-85817dd16425 · outbound

This paper cites Strong Field Scattering of Black Holes: Assessing Resummation Strategies.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Strong Field Scattering of Black Holes: Assessing Resummation Strategies

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This paper cites A numerical-relativity surrogate model for hyperbolic encounters of black holes: challenges in parameter estimation.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results A numerical-relativity surrogate model for hyperbolic encounters of black holes: challenges in parameter estimation

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This paper cites Towards adiabatic waveforms for inspiral into Kerr black holes: I. A new model of the source for the time domain perturbation equation.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Towards adiabatic waveforms for inspiral into Kerr black holes: I. A new model of the source for the time domain perturbation equation

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This paper cites Towards adiabatic waveforms for inspiral into Kerr black holes: II. Dynamical sources and generic orbits.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Towards adiabatic waveforms for inspiral into Kerr black holes: II. Dynamical sources and generic orbits

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This paper cites A GPU-accelerated mixed-precision WENO method for extremal black hole and gravitational wave physics computations.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results A GPU-accelerated mixed-precision WENO method for extremal black hole and gravitational wave physics computations

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This paper cites A new gravitational wave generation algorithm for particle perturbations of the Kerr spacetime.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results A new gravitational wave generation algorithm for particle perturbations of the Kerr spacetime

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This paper cites Numerical solution of the 2+1 Teukolsky equation on a hyperboloidal and horizon penetrating foliation of Kerr and application to late-time decays.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Numerical solution of the 2+1 Teukolsky equation on a hyperboloidal and horizon penetrating foliation of Kerr and application to late-time decays

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This paper cites Exploiting Newton-factorized, 2PN-accurate, waveform multipoles in effective-one-body models for spin-aligned noncircularized binaries.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Exploiting Newton-factorized, 2PN-accurate, waveform multipoles in effective-one-body models for spin-aligned noncircularized binaries

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Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Effective one-body model for extreme-mass-ratio spinning binaries on eccentric equatorial orbits: testing radiation reaction and waveform

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This paper cites Assessment of Effective-One-Body Radiation Reactions for Generic Planar Orbits.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Assessment of Effective-One-Body Radiation Reactions for Generic Planar Orbits

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

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Testing eccentric corrections to the radiation-reaction force in the test-mass limit of effective-one-body models

Reference 73

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This paper cites Gravitational waveforms from a point particle orbiting a Schwarzschild black hole.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Gravitational waveforms from a point particle orbiting a Schwarzschild black hole

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This paper cites Unbound motion on a Schwarzschild background: Practical approaches to frequency domain computations.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Unbound motion on a Schwarzschild background: Practical approaches to frequency domain computations

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This paper cites Scattering of point particles by black holes: gravitational radiation.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Scattering of point particles by black holes: gravitational radiation

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This paper cites Semianalytical estimates of scattering thresholds and gravitational radiation in ultrarelativistic black hole encounters.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Semianalytical estimates of scattering thresholds and gravitational radiation in ultrarelativistic black hole encounters

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This paper cites Gravitational radiation from Kerr black holes using the Sasaki-Nakamura formalism: Waveforms and fluxes at infinity.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Gravitational radiation from Kerr black holes using the Sasaki-Nakamura formalism: Waveforms and fluxes at infinity

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Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Pound and B

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This paper cites Self-force correction to the deflection angle in black-hole scattering: a scalar charge toy model.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Self-force correction to the deflection angle in black-hole scattering: a scalar charge toy model

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This paper cites Frequency-domain approach to self-force in hyperbolic scattering.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Frequency-domain approach to self-force in hyperbolic scattering

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This paper cites Whittall, L.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Whittall, L

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Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Unresolved cited work

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This paper cites Comparison of post-Minkowskian and self-force expansions: Scattering in a scalar charge toy model.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Comparison of post-Minkowskian and self-force expansions: Scattering in a scalar charge toy model

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Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Unresolved cited work

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This paper cites Turner, Gravitational radiation from point-masses in unbound orbits: Newtonian results., Astrophys.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Turner, Gravitational radiation from point-masses in unbound orbits: Newtonian results., Astrophys

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This paper cites Radiative contributions to gravitational scattering.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Radiative contributions to gravitational scattering

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This paper cites Energy and angular momentum flow into a black hole in a binary.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Energy and angular momentum flow into a black hole in a binary

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This paper cites Junker and G.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Junker and G

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This paper cites Radiative contribution to classical gravitational scattering at the third order in $G$.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Radiative contribution to classical gravitational scattering at the third order in $G$

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Observation ede75843-e5bc-4271-8ef5-3fea7b0a2e4b · outbound

This paper cites Radiated Angular Momentum and Dissipative Effects in Classical Scattering.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Radiated Angular Momentum and Dissipative Effects in Classical Scattering

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This paper cites Classical Gravitational Observables from the Eikonal Operator.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Classical Gravitational Observables from the Eikonal Operator

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Observation 2069c6c8-11c5-4868-9656-731d528d2953 · outbound

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Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Radiation-Reaction and Angular Momentum Loss at $\mathcal{O}(G^4)$

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Observation 57e630e3-751d-4b2b-a0d7-a7770759b894 · outbound

This paper cites Dissipative scattering of spinning black holes at fourth post-Minkowskian order.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Dissipative scattering of spinning black holes at fourth post-Minkowskian order

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Observation 021eefc4-c465-4090-82ef-8a0a26f3136f · outbound

This paper cites Cutler, D.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Cutler, D

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Reference 96

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Observation 2b070fb8-8456-4558-81b9-fe2eb58b87b5 · outbound

This paper cites Regge and J.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Regge and J

Reference 97

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Observation d9538d4a-bd10-4252-8c03-6f38ef5789e6 · outbound

This paper cites an unresolved cited work.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Unresolved cited work

Reference 98

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Observation ea43ad1f-9ffb-49db-bacb-a6753c822ee6 · outbound

This paper cites Gravitational perturbations of the Schwarzschild spacetime: A practical covariant and gauge-invariant formalism.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Gravitational perturbations of the Schwarzschild spacetime: A practical covariant and gauge-invariant formalism

Reference 99

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Observation c3c4e511-b6cc-4269-bd46-e729ded85ecf · outbound

This paper cites Moncrief, Gravitational perturbations of spherically symmetric systems.

Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results Moncrief, Gravitational perturbations of spherically symmetric systems

Reference 100

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Pith citing papers

Observation a9187c7d-1cab-4ec5-bc61-ff4540b28b4b · inbound

Conservative Black Hole Scattering at Fifth Post-Minkowskian and Second Self-Force Order cites this paper.

Conservative Black Hole Scattering at Fifth Post-Minkowskian and Second Self-Force Order Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results

Reference 97

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Observation 9b8e2905-f019-4e0b-af6d-183ccaa40a30 · inbound

Resummed energy loss in extreme-mass-ratio scattering using critical orbits cites this paper.

Resummed energy loss in extreme-mass-ratio scattering using critical orbits Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results

Reference 55

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Observation e15b03b8-a6f0-4f51-838e-6a84274ad26a · inbound

A Runway to Dissipation of Angular Momentum via Worldline Quantum Field Theory cites this paper.

A Runway to Dissipation of Angular Momentum via Worldline Quantum Field Theory Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results

Reference 118

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Observation 56a51191-1529-4947-88a7-a35bebc378d1 · inbound

Weak-field waveforms for generic relativistic orbits cites this paper.

Weak-field waveforms for generic relativistic orbits Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results

Reference 77

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Observation 5233e8e1-b262-4267-a145-d548caf7526d · inbound

Horizon absorption in eccentric precessing binary black hole inspirals and its importance for gravitational wave data analysis cites this paper.

Horizon absorption in eccentric precessing binary black hole inspirals and its importance for gravitational wave data analysis Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results

Reference 64

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Observation e58e02c0-2327-43c6-a7fc-1f1c3633a00b · inbound

Time-domain framework for the Teukolsky equation with a particle source using comoving hyperboloidal coordinates cites this paper.

Time-domain framework for the Teukolsky equation with a particle source using comoving hyperboloidal coordinates Gravitational radiation from hyperbolic orbits: comparison between self-force, post-Minkowskian, post-Newtonian, and numerical relativity results

Reference 13

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