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Coalescence of Kerr Black Holes-Binary Systems from GW150914 to GW170814open access

Authors
Gwak, Bogeun
Issue Date
Oct-2019
Publisher
MDPI
Keywords
black hole; gravitational wave; thermodynamics
Citation
ENTROPY, v.21, no.10
Indexed
SCIE
SCOPUS
Journal Title
ENTROPY
Volume
21
Number
10
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/7587
DOI
10.3390/e21101017
ISSN
1099-4300
1099-4300
Abstract
We investigate the energy of the gravitational wave from a binary black hole merger by the coalescence of two Kerr black holes with an orbital angular momentum. The coalescence is constructed to be consistent with particle absorption in the limit in which the primary black hole is sufficiently large compared with the secondary black hole. In this limit, we analytically obtain an effective gravitational spin-orbit interaction dependent on the alignments of the angular momenta. Then, binary systems with various parameters including equal masses are numerically analyzed. According to the numerical analysis, the energy of the gravitational wave still depends on the effective interactions, as expected from the analytical form. In particular, we ensure that the final black hole obtains a large portion of its spin angular momentum from the orbital angular momentum of the initial binary black hole. To estimate the angular momentum released by the gravitational wave in the actual binary black hole, we apply our results to observations at the Laser Interferometer Gravitational-Wave Observatory: GW150914, GW151226, GW170104, GW170608 and GW170814.
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