Post-merger chirps from binary black holes as probes of the final black-hole horizon
Abstract
The merger of a binary black hole gives birth to a highly distorted final black hole. The gravitational radiation emitted as this black hole relaxes presents us with the unique opportunity to probe extreme gravity and its connection with the dynamics of the black hole horizon. Using numerical relativity simulations, we demonstrate a connection between a concrete observable feature in the gravitational waves and geometrical features on the dynamical apparent horizon of the final black hole. Specifically, we show how the line-of-sight passage of a "cusp"-like defect on the horizon of the final black hole correlates with "chirp"-like frequency peaks in the post-merger gravitational-waves. These post-merger chirps should be observed and analyzed as the sensitivity of LIGO and Virgo increases and as future generation detectors, such as LISA and the Einstein Telescope, become operational.
Keywords
Cite
@article{arxiv.1906.01153,
title = {Post-merger chirps from binary black holes as probes of the final black-hole horizon},
author = {Juan Calderón Bustillo and Chris Evans and James A. Clark and Grace Kim and Pablo Laguna and Deirdre Shoemaker},
journal= {arXiv preprint arXiv:1906.01153},
year = {2020}
}
Comments
Version accepted in Communications Physics. 11 pages, 5 figures in main text, 3 Figures in Supp. Material