Gravitational-Wave Extraction from an Inspiraling Configuration of Merging Black Holes (original) (raw)

ADS

;

Abstract

We present new ideas for evolving black holes through a computational grid without excision, which enable accurate and stable evolutions of binary black hole systems with the accurate determination of gravitational waveforms directly from the wave zone region. Rather than excising the black hole interiors, our approach follows the “puncture” treatment of black holes, but utilizing a new gauge condition which allows the black holes to move successfully through the computational domain. We apply these techniques to an inspiraling binary, modeling the radiation generated during the final plunge and ringdown. We demonstrate convergence of the waveforms and good conservation of mass-energy, with just over 3% of the system’s mass converted to gravitational radiation.

Publication:

Physical Review Letters

Pub Date:

March 2006

DOI:

10.1103/PhysRevLett.96.111102

10.48550/arXiv.gr-qc/0511103

arXiv:

arXiv:gr-qc/0511103

Bibcode:

2006PhRvL..96k1102B

Keywords:

E-Print:

4 pages, 5 figures