1994Progress of Theoretical PhysicsOpen access

Post-Newtonian Expansion of Gravitational Waves from a Particle in Circular Orbit around a Schwarzschild Black Hole

Hideyuki Tagoshi, Misao Sasaki

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Abstract

Based upon the formalism recently developed by one of us (MS), we analytically perform the post-Newtonian expansion of gravitational waves from a test particle in circular orbit of radius r0 around a Schwarzschild black hole of mass M. We calculate gravitational wave forms and luminosity up to v8 order beyond Newtonian, where v = (M/r0)1/2. In particular, we give the exact analytical values of the coefficients of ln v terms at v6 and v8 orders in the luminosity and confirm the numerical values obtained previously by one of us (HT) and Nakamura. Our result is valid in the small mass limit of one body and gives an important guideline for the gravitational wave physics of coalescing compact binaries.

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Based upon the formalism recently developed by one of us (MS), we analytically perform the post-Newtonian expansion of gravitational waves from a test particle in circular orbit of radius r0 around a Schwarzschild black hole of mass M. We calculate gravitational wave forms and luminosity up to v8 order beyond Newtonian, where v = (M/r0)1/2. In particular, we give the exact analytical values of the coefficients of ln v terms at v6 and v8 orders in the luminosity and confirm the numerical values obtained previously by one of us (HT) and Nakamura. Our result is valid in the small mass limit of one body and gives an important guideline for the gravitational wave physics of coalescing compact binaries.

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Available abstract

Based upon the formalism recently developed by one of us (MS), we analytically perform the post-Newtonian expansion of gravitational waves from a test particle in circular orbit of radius r0 around a Schwarzschild black hole of mass M. We calculate gravitational wave forms and luminosity up to v8 order beyond Newtonian, where v = (M/r0)1/2. In particular, we give the exact analytical values of the coefficients of ln v terms at v6 and v8 orders in the luminosity and confirm the numerical values obtained previously by one of us (HT) and Nakamura. Our result is valid in the small mass limit of one body and gives an important guideline for the gravitational wave physics of coalescing compact binaries.

Key concepts: Physics, Schwarzschild radius, Gravitational wave, Circular orbit, Schwarzschild metric, Black hole (networking), General relativity, Classical mechanics

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