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High-Order Post-Newtonian Fit of the Gravitational Self-Force for Circular Orbits in the Schwarzschild Geometry

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arxiv 1002.0726 v2 pith:L76CNZOG submitted 2010-02-03 gr-qc

classification gr-qc
keywords gravitationalnumericalorderanalyticallycircularcoefficientsdataefforts
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We continue a previous work on the comparison between the post-Newtonian (PN) approximation and the gravitational self-force (SF) analysis of circular orbits in a Schwarzschild background. We show that the numerical SF data contain physical information corresponding to extremely high PN approximations. We find that knowing analytically determined appropriate PN parameters helps tremendously in allowing the numerical data to be used to obtain higher order PN coefficients. Using standard PN theory we compute analytically the leading 4PN and the next-to-leading 5PN logarithmic terms in the conservative part of the dynamics of a compact binary system. The numerical perturbative SF results support well the analytic PN calculations through first order in the mass ratio, and are used to accurately measure the 4PN and 5PN non-logarithmic coefficients in a particular gauge invariant observable. Furthermore we are able to give estimates of higher order contributions up to the 7PN level. We also confirm with high precision the value of the 3PN coefficient. This interplay between PN and SF efforts is important for the synthesis of template waveforms of extreme mass ratio inspirals to be analysed by the space-based gravitational wave instrument LISA. Our work will also have an impact on efforts that combine numerical results in a quantitative analytical framework so as to generate complete inspiral waveforms for the ground-based detection of gravitational waves by instruments such as LIGO and Virgo.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Second-order self-force calculation of the gravitational binding energy in compact binaries

    gr-qc 2019-08 conditional novelty 8.0 of 10

    A complete second-order self-force scheme is implemented for quasicircular orbits around a Schwarzschild black hole and used to compute the gravitational binding energy.

  2. High-Post-Newtonian-Order Dynamics Induced by Tail-of-Tail Interactions: The Non-Geodesic Terms

    gr-qc 2026-08 conditional novelty 7.0 of 10

    The authors compute tail-of-tail contributions to the effective-one-body Q potential through p_r^12 and derive new second-order self-force redshift predictions for eccentric binaries.

  3. Novel approach to binary dynamics: application to the fifth post-Newtonian level

    gr-qc 2019-09 conditional novelty 7.0 of 10

    A nearly complete fifth post-Newtonian Hamiltonian for spinless binaries is derived, and the resulting third post-Minkowskian scattering angle confirms Bern et al. (2019).

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