Generation and propagation of nonlinear quasi-normal modes of a Schwarzschild black hole
arXiv:2208.07379 · doi:10.1103/PhysRevD.107.044040
Abstract
In the analysis of a binary black hole coalescence, it is necessary to include gravitational self-interactions in order to describe the transition of the gravitational wave signal from the merger to the ringdown stage. In this paper we study the phenomenology of the generation and propagation of nonlinearities in the ringdown of a Schwarzschild black hole, using second-order perturbation theory. Following earlier work, we show that the Green's function and its causal structure determines how both first-order and second-order perturbations are generated, and hence highlight that both of these solutions share some physical properties. In particular, we discuss the sense in which both linear and quadratic quasi-normal modes (QNMs) are generated in the vicinity of the peak of the gravitational potential barrier (loosely referred to as the light ring). Among the second-order perturbations, there are solutions with linear QNM frequencies (whose amplitudes are thus renormalized from their linear values), as well as quadratic QNM frequencies with a distinct spectrum. Moreover, we show using a WKB analysis that, in the eikonal limit, waves generated inside the light ring propagate towards the black hole horizon, and only waves generated outside propagate towards an asymptotic observer. These results might be relevant for recent discussions on the validity of perturbation theory close to the merger. Finally, we argue that even if nonlinearities are small, quadratic QNMs may be detectable and would likely be useful for improving ringdown models of higher angular harmonics and future tests of gravity.
Version accepted in PRD
References in corpus (32)
- Tests of General Relativity with Binary Black Holes from the second LIGO-Virgo Gravitational-Wave Transient Catalog
- Inspiral, merger and ring-down of equal-mass black-hole binaries
- Inspiral, merger and ringdown of unequal mass black hole binaries: a multipolar analysis
- Testing the black hole "no-hair" hypothesis
- Quasinormal-mode spectrum of Kerr black holes and its geometric interpretation
- Nonlinearities in Black Hole Ringdowns
- Nonlinear effects in black hole ringdown
- Analysis of Ringdown Overtones in GW150914
- Testing the black-hole area law with GW150914
- Ringdown overtones, black hole spectroscopy, and no-hair theorem tests
- Perturbed Kerr Black Holes can probe deviations from General Relativity
- Black-hole spectroscopy, the no-hair theorem and GW150914: Kerr vs. Occam
- Spectroscopy of binary black hole ringdown using overtones and angular modes
- Second Order Quasi-Normal Mode of the Schwarzschild Black Hole
- Nonlinear effects in the black hole ringdown: absorption-induced mode excitation
- Second Order Perturbations of Kerr Black Holes: Reconstruction of the Metric
- Searching for a Ringdown Overtone in GW150914
- Quasinormal-mode filters: a new approach to analyze the gravitational-wave ringdown of binary black-hole mergers
- Numerical computation of second order vacuum perturbations of Kerr black holes
- Black Hole Hair from Scalar Dark Matter
- A complete gauge-invariant formalism for arbitrary second-order perturbations of a Schwarzschild black hole
- Second and higher-order quasi-normal modes in binary black hole mergers
- Importance of mirror modes in binary black hole ringdown waveform
- Second and higher-order perturbations of a spherical spacetime
- High Precision Ringdown Modeling: Multimode Fits and BMS Frames
- Quasinormal modes and their overtones at the common horizon in a binary black hole merger
- Modelling the Ringdown from Precessing Black Hole Binaries
- High-order gauge-invariant perturbations of a spherical spacetime
- Quasinormal modes, echoes and the causal structure of the Green's function
- Effective Field Theory for the Perturbations of a Slowly Rotating Black Hole
- Possible discovery of a nonlinear tail and second-order quasinormal modes in black hole ringdown
- Mode coupling of Schwarzschild perturbations: Ringdown frequencies
Cited by in corpus (39)
- Nonlinearities in Black Hole Ringdowns
- Agnostic black hole spectroscopy: Quasinormal mode content of numerical relativity waveforms and limits of validity of linear perturbation theory
- The Science of the Einstein Telescope
- Extracting linear and nonlinear quasinormal modes from black hole merger simulations
- Spin dependence of black hole ringdown nonlinearities
- The excitation of quadratic quasinormal modes for Kerr black holes
- Possible Causes of False General Relativity Violations in Gravitational Wave Observations
- Using rational filters to uncover the first ringdown overtone in GW150914
- Non-linearities in the tidal Love numbers of black holes
- Ringdown of a dynamical spacetime
- Analog Schwarzschild black holes of Bose-Einstein condensates in a cavity: Quasinormal modes and quasibound states
- Non-linear Black Hole Ringdowns: an Analytical Approach
- Nonlinear quasinormal mode detectability with next-generation gravitational wave detectors
- Searching for ringdown higher modes with a numerical relativity-informed post-merger model
- Nonlinear Quasi-Normal Modes: Uniform Approximation
- Landscape of stellar-mass black-hole spectroscopy with third-generation gravitational-wave detectors
- Explaining Nonlinearities in Black Hole Ringdowns from Symmetries
- Ringdown amplitudes of nonspinning eccentric binaries
- Hushing black holes: tails in dynamical spacetimes
- Quadratic Quasi-Normal Modes of a Schwarzschild Black Hole
- Parametrized Black Hole Quasinormal Ringdown Formalism for Higher Overtones
- Amplitudes and Polarizations of Quadratic Quasi-Normal Modes for a Schwarzschild Black Hole
- Vanishing of Quadratic Love Numbers of Schwarzschild Black Holes
- Metric perturbations of Kerr spacetime in Lorenz gauge: Circular equatorial orbits
- Quasinormal Modes and Love Numbers of Kerr Black Holes from AdS Black Holes
- Testing the Speed of Gravity with Black Hole Ringdown
- Iterative extraction of overtones from black hole ringdown
- Linear vs. nonlinear modeling of black hole ringdowns
- Dynamical quasinormal mode excitation
- Spectroscopy for asymmetric binary black hole mergers
- Ringdowns for black holes with scalar hair: the large mass case
- An analytic approach to quasinormal modes for coupled linear systems
- Systematic bias in LISA ringdown analysis due to waveform inaccuracy
- Transients in black hole perturbation theory
- Black-Hole Cartography
- Quasinormal mode content of binary black hole ringdowns
- Natural polynomials for Kerr quasi-normal modes
- The second-order quasi-normal modes for AdS black branes
- Numerical computation of electromagnetically sourced nonlinear tails