Energy flux and waveform of gravitational wave generated by coalescing slow-spinning binary system in effective one-body theory

We extend our research on the energy flux and waveform characteristics of gravitational waves generated by merging nonspinning binary black holes through self-consistent effective one-body theory to include binary systems with slowly spinning black holes. Initially, we decompose the equation for the...

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Veröffentlicht in:Science China. Physics, mechanics & astronomy mechanics & astronomy, 2024-09, Vol.67 (9), p.290412, Article 290412
Hauptverfasser: Deng, Weike, Long, Sheng, Jing, Jiliang
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Sprache:eng
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Zusammenfassung:We extend our research on the energy flux and waveform characteristics of gravitational waves generated by merging nonspinning binary black holes through self-consistent effective one-body theory to include binary systems with slowly spinning black holes. Initially, we decompose the equation for the null tetrad component of the gravitationally perturbed Weyl tensor ψ 4 B into radial and angular parts, leveraging the second-order approximation of the rotation parameter a . Subsequently, we derive an analytical solution for the radial equation and observe that our results are contingent upon the parameters a 2 , a 3 , and a , which represent the second- and third-order correction parameters, respectively. Ultimately, we calculate the energy flux, the radiation-reaction force and the waveform for the “plus” and “cross” modes of the gravitational waves generated by merging slowly spinning binary black holes.
ISSN:1674-7348
1869-1927
DOI:10.1007/s11433-024-2415-y