Nonlinearities in Black Hole Ringdowns
arXiv:2208.07380 · doi:10.1103/PhysRevLett.130.081402
Abstract
The gravitational wave strain emitted by a perturbed black hole (BH) ringing down is typically modeled analytically using first-order BH perturbation theory. In this Letter we show that second-order effects are necessary for modeling ringdowns from BH merger simulations. Focusing on the strain's angular harmonic, we show the presence of a quadratic effect across a range of binary BH mass ratios that agrees with theoretical expectations. We find that the quadratic mode's amplitude exhibits quadratic scaling with the fundamental mode -- its parent mode. The nonlinear mode's amplitude is comparable to or even larger than that of the linear mode. Therefore, correctly modeling the ringdown of higher harmonics -- improving mode mismatches by up to 2 orders of magnitude -- requires the inclusion of nonlinear effects.
6+2 pages, 4 figures, 1 table. Matches PRL version