Extracting linear and nonlinear quasinormal modes from black hole merger simulations
arXiv:2310.04489 · doi:10.1103/PhysRevD.109.044069
Abstract
In general relativity, when two black holes merge they produce a rotating (Kerr) black hole remnant. According to perturbation theory, the remnant emits "ringdown" radiation: a superposition of exponentials with characteristic complex frequencies that depend only on the remnant's mass and spin. While the goal of the black hole spectroscopy program is to measure the quasinormal mode frequencies, a knowledge of their amplitudes and phases is equally important to determine which modes are detectable, and possibly to perform additional consistency checks. Unlike the complex frequencies, the amplitudes and phases depend on the properties of the binary progenitors, such as the binary mass ratio and component spins. In this paper we develop a fitting algorithm designed to reliably identify the modes present in numerical simulations and to extract their amplitudes and phases. We apply the algorithm to over 500 binary black hole simulations from the public SXS numerical relativity simulation catalog, and we present fitting formulas for the resulting mode amplitudes and phases as functions of the properties of the progenitors. Crucially, our algorithm allows for the extraction of not only prograde fundamental modes and overtones, but also retrograde modes and second-order modes. We unveil interesting relations for the amplitude ratios of different modes. The fitting code and interactive versions of some of the plots are publicly available. The results presented in this paper can be updated as more and better simulations become available.
39 pages, 22 figures, 2 tables. Interactive plots and code usage examples available at https://mhycheung.github.io/jaxqualin/. Eq. (20) and Fig. 10 are updated in this version
References in corpus (86)
- SciPy 1.0--Fundamental Algorithms for Scientific Computing in Python
- Array Programming with NumPy
- Quasinormal modes of black holes and black branes
- Evolution of Binary Black Hole Spacetimes
- Accurate Evolutions of Orbiting Black-Hole Binaries Without Excision
- Gravitational wave extraction from an inspiraling configuration of merging black holes
- Testing the nature of dark compact objects: a status report
- On gravitational-wave spectroscopy of massive black holes with the space interferometer LISA
- Inspiral, merger and ring-down of equal-mass black-hole binaries
- The SXS Collaboration catalog of binary black hole simulations
- Black Hole Spectroscopy: Testing General Relativity through Gravitational Wave Observations
- Inspiral, merger and ringdown of unequal mass black hole binaries: a multipolar analysis
- Testing the no-hair theorem with GW150914
- Eigenvalues and eigenfunctions of spin-weighted spheroidal harmonics in four and higher dimensions
- Extreme Gravity Tests with Gravitational Waves from Compact Binary Coalescences: (II) Ringdown
- Surrogate model of hybridized numerical relativity binary black hole waveforms
- Black hole ringdown: the importance of overtones
- Matched-filtering and parameter estimation of ringdown waveforms
- Modeling Ringdown: Beyond the Fundamental Quasi-Normal Modes
- Using Full Information When Computing Modes of Post-Newtonian Waveforms From Inspiralling Compact Binaries in Circular Orbit
- Nonlinearities in Black Hole Ringdowns
- Nonlinear effects in black hole ringdown
- Quasinormal ringing of Kerr black holes: The excitation factors
- Analysis of Ringdown Overtones in GW150914
- Agnostic black hole spectroscopy: Quasinormal mode content of numerical relativity waveforms and limits of validity of linear perturbation theory
- Black-hole hair loss: learning about binary progenitors from ringdown signals
- High-accuracy mass, spin, and recoil predictions of generic black-hole merger remnants
- Black Hole Spectroscopy: Systematic Errors and Ringdown Energy Estimates
- Testing the black-hole area law with GW150914
- Ringdown overtones, black hole spectroscopy, and no-hair theorem tests
- Transformations of asymptotic gravitational-wave data
- Is black-hole ringdown a memory of its progenitor?
- Angular velocity of gravitational radiation from precessing binaries and the corotating frame
- Mixing of spherical and spheroidal modes in perturbed Kerr black holes
- qnm: A Python package for calculating Kerr quasinormal modes, separation constants, and spherical-spheroidal mixing coefficients
- Quasinormal ringing of Kerr black holes. II. Excitation by particles falling radially with arbitrary energy
- A new gravitational wave generation algorithm for particle perturbations of the Kerr spacetime
- Black-hole spectroscopy, the no-hair theorem and GW150914: Kerr vs. Occam
- Binary black hole merger in the extreme-mass-ratio limit: a multipolar analysis
- Spectroscopy of binary black hole ringdown using overtones and angular modes
- Second Order Quasi-Normal Mode of the Schwarzschild Black Hole
- Mode coupling in the nonlinear response of black holes
- Nonlinear effects in the black hole ringdown: absorption-induced mode excitation
- Modeling multipolar gravitational-wave emission from small mass-ratio mergers
- A multimode quasi-normal spectrum from a perturbed black hole
- On the accuracy and precision of numerical waveforms: Effect of waveform extraction methodology
- Overtones or higher harmonics? Prospects for testing the no-hair theorem with gravitational wave detections
- Second Order Perturbations of Kerr Black Holes: Reconstruction of the Metric
- Adding Gravitational Memory to Waveform Catalogs using BMS Balance Laws
- Quasinormal-mode filters: a new approach to analyze the gravitational-wave ringdown of binary black-hole mergers
- Generation and propagation of nonlinear quasi-normal modes of a Schwarzschild black hole
- Numerical computation of second order vacuum perturbations of Kerr black holes
- Improved Cauchy-characteristic evolution system for high-precision numerical relativity waveforms
- A complete gauge-invariant formalism for arbitrary second-order perturbations of a Schwarzschild black hole
- A numerical study of the quasinormal mode excitation of Kerr black holes
- Importance of mirror modes in binary black hole ringdown waveform
- Second and higher-order quasi-normal modes in binary black hole mergers
- Multi-mode black hole spectroscopy
- Decoding mode-mixing in black-hole merger ringdown
- Role of black hole quasinormal mode overtones for ringdown analysis
- Modeling ringdown II: non-precessing binary black holes
- LISA parameter estimation and source localization with higher harmonics of the ringdown
- High Precision Ringdown Modeling: Multimode Fits and BMS Frames
- Multipolar analysis of spinning binaries
- Aspects of multimode Kerr ring-down fitting
- High-overtone fits to numerical relativity ringdowns: beyond the dismissed n=8 special tone
- Quasinormal modes and their overtones at the common horizon in a binary black hole merger
- Using rational filters to uncover the first ringdown overtone in GW150914
- Fixing the BMS frame of numerical relativity waveforms with BMS charges
- Modelling the Ringdown from Precessing Black Hole Binaries
- Numerical relativity surrogate model with memory effects and post-Newtonian hybridization
- Challenges testing the no-hair theorem with gravitational waves
- Neural Posterior Estimation with guaranteed exact coverage: the ringdown of GW150914
- Accuracy of binary black hole waveform models for aligned-spin binaries
- Nonlinear ringdown at the black hole horizon
- Non-linear Black Hole Ringdowns: an Analytical Approach
- Spectroscopic analysis of stellar mass black-hole mergers in our local universe with ground-based gravitational wave detectors
- Mode coupling of Schwarzschild perturbations: Ringdown frequencies
- Comparison of post-Newtonian mode amplitudes with numerical relativity simulations of binary black holes
- Black hole spectroscopy horizons for current and future gravitational wave detectors
- Detectability of the subdominant mode in a binary black hole ringdown
- Nonlinear Quasi-Normal Modes: Uniform Approximation
- Compact Binary Waveform Center-of-Mass Corrections
- Extending Gravitational Wave Extraction Using Weyl Characteristic Fields
- Explaining Nonlinearities in Black Hole Ringdowns from Symmetries
- Considerations on the excitation of black hole quasinormal modes
Cited by in corpus (51)
- GW231123: a Binary Black Hole Merger with Total Mass 190-265
- GW250114: testing Hawking's area law and the Kerr nature of black holes
- The Science of the Einstein Telescope
- Ringdown stability: greybody factors as stable gravitational-wave observables
- Spin dependence of black hole ringdown nonlinearities
- Possible Causes of False General Relativity Violations in Gravitational Wave Observations
- The SXS Collaboration's third catalog of binary black hole simulations
- Nonlinear quasinormal mode detectability with next-generation gravitational wave detectors
- Resonant Excitation of Quasinormal Modes of Black Holes
- Searching for ringdown higher modes with a numerical relativity-informed post-merger model
- Overtones and Nonlinearities in Binary Black Hole Ringdowns
- Ringdown amplitudes of nonspinning eccentric binaries
- Hyperboloidal Approach to Quasinormal Modes
- Greybody factors, reflectionless scattering modes, and echoes of ultracompact horizonless objects
- Systematic biases due to waveform mismodeling in parametrized post-Einsteinian tests of general relativity: The impact of neglecting spin precession and higher modes
- Quadratic Quasi-Normal Modes of a Schwarzschild Black Hole
- Flexible mapping of ringdown amplitudes for nonprecessing binary black holes
- Parametrized Black Hole Quasinormal Ringdown Formalism for Higher Overtones
- Amplitudes and Polarizations of Quadratic Quasi-Normal Modes for a Schwarzschild Black Hole
- Relativistic aerodynamics of spinning black holes
- Striking the right tone: toward a self-consistent framework for measuring black hole ringdowns
- High-Precision Ringdown Surrogate Model for Non-Precessing Binary Black Holes
- Nonlinear effect of absorption on the ringdown of a spinning black hole
- Iterative extraction of overtones from black hole ringdown
- Parametrized spin-precessing inspiral-merger-ringdown waveform model for tests of general relativity
- Quasi-Local Black Hole Horizons: Recent Advances
- Dynamical quasinormal mode excitation
- Ringdown mode amplitudes of precessing binary black holes
- Ringdown nonlinearities in the eikonal regime
- Quasinormal Modes in Modified Gravity using Physics-Informed Neural Networks
- Simulation-based inference of black hole ringdowns in the time domain
- Quantifying Systematic Biases in Black Hole Spectroscopy
- Quadratic Mode Couplings in Rotating Black Holes and Their Detectability
- Robustness of extracting quasinormal mode information from black hole merger simulations
- Ringdown spectroscopy of phenomenologically modified black holes
- Resonance in black hole ringdown: Benchmarking quasinormal mode excitation and extraction
- The ringdown of a black hole surrounded by a thin shell of matter
- Systematic bias in LISA ringdown analysis due to waveform inaccuracy
- Black hole spectroscopy of collapsing and merging neutron stars
- Mapping Parameter Correlations in Spinning Binary Black Hole Mergers
- Analyzing black-hole ringdowns with orthonormal modes
- Quasinormal mode content of binary black hole ringdowns
- Exact WKB method for radial Schrödinger equation
- QNM families: classification and competition
- Quasinormal modes from numerical relativity with Bayesian inference
- Modeling the frequency-domain ringdown amplitude of comparable-mass mergers with greybody factors
- Numerical computation of electromagnetically sourced nonlinear tails
- Excitation factors for horizonless compact objects: long-lived modes, echoes, and greybody factors
- Black-hole ringdown with templates capturing spin precession: A reanalysis of GW190521
- Measuring spin precession from massive black hole binaries with gravitational waves: insights from time-domain signal morphology
- Ringdown mode amplitudes of charged binary black holes