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New derivation of a third post-Newtonian equation of motion for relativistic compact binaries without ambiguity

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arxiv gr-qc/0310028 v2 pith:GTNVHUDV submitted 2003-10-06 gr-qc

New derivation of a third post-Newtonian equation of motion for relativistic compact binaries without ambiguity

classification gr-qc
keywords motionequationpost-newtonianbinarycompactenergyorbitalsense
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A third post-Newtonian (3 PN) equation of motion for an inspiralling binary consisting of two spherical compact stars with strong internal gravity is derived under harmonic coordinate condition using the strong field point particle limit. The equation of motion is complete in a sense that it is Lorentz invariant in the post-Newtonian perturbative sense, admits conserved energy of the orbital motion, and is unambiguous, that is, with no undetermined coefficient. In this paper, we show explicit expressions of the 3 PN equation of motion and an energy of the binary orbital motion in case of the circular orbit (neglecting the 2.5 PN radiation reaction effect) and in the center of the mass frame. It is argued that the 3 PN equation of motion we obtained is physically unambiguous. Full details will be reported elsewhere.

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Cited by 3 Pith papers

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  2. Worldline effective field theory of inspiralling black hole binaries in presence of dark photon and axionic dark matter

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    Computes 1PN conservative dynamics for gravitational/EM/Proca fields and 2PN for scalar, plus radiation effects from axion-photon coupling at high PN orders in binary black hole systems with dark matter.

  3. Post-Newtonian Theory for Gravitational Waves

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    A review of the MPM-PN approximation scheme that yields equations of motion to 4PN order and gravitational waveforms and fluxes to 4.5PN order for compact binary systems.