In this paper, we compare the waveforms from the post-Newtonian (PN) approach with the numerical simulations of generic black-hole binaries which have mass ratio q∼0.8, arbitrarily oriented spins with magnitudes S1/m12∼0.6 and S2/m22∼0.4, and orbit 9 times from an initial orbital separation of r≈11M prior to merger. We observe a reasonably good agreement between the PN and numerical waveforms, with an overlap of over 98% for the first six cycles of the (ℓ=2,m=±2) mode and over 90% for the (ℓ=2,m=1) and (ℓ=3,m=3) modes.
@article{arxiv.0901.3861,
title = {Comparison of Post-Newtonian and Numerical Evolutions of Black-Hole Binaries},
author = {Hiroyuki Nakano and Manuela Campanelli and Carlos O. Lousto and Yosef Zlochower},
journal= {arXiv preprint arXiv:0901.3861},
year = {2009}
}
Comments
4 pages, 2 figures, prepared for the proceedings of the 18th workshop on general relativity and gravitation, Hiroshima, Japan, Nov.17 - Nov.21, 2008