Measuring the spins of heavy binary black holes
arXiv:2106.06492 · doi:10.1103/PhysRevD.104.103018
Abstract
An accurate and precise measurement of the spins of individual merging black holes is required to understand their origin. While previous studies have indicated that most of the spin information comes from the inspiral part of the signal, the informative spin measurement of the heavy binary black hole system GW190521 suggests that the merger and ringdown can contribute significantly to the spin constraints for such massive systems. We perform a systematic study into the measurability of the spin parameters of individual heavy binary black hole mergers using a numerical relativity surrogate waveform model including the effects of both spin-induced precession and higher-order modes. We find that the spin measurements are driven by the merger and ringdown parts of the signal for GW190521-like systems, but the uncertainty in the measurement increases with the total mass of the system. We are able to place meaningful constraints on the spin parameters even for systems observed at moderate signal-to-noise ratios, but the measurability depends on the exact six-dimensional spin configuration of the system. Finally, we find that the azimuthal angle between the in-plane projections of the component spin vectors at a given reference frequency cannot be well-measured for most of our simulated configurations even for signals observed with high signal-to-noise ratios.
Version accepted in PRD
References in corpus (26)
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Advanced LIGO
- GW190521: A Binary Black Hole Merger with a Total Mass of
- Robust parameter estimation for compact binaries with ground-based gravitational-wave observations using the LALInference software library
- Formation of Supermassive Black Holes by Direct Collapse in Pregalactic Halos
- Pulsational Pair-Instability Supernovae
- Comparison of post-Newtonian templates for compact binary inspiral signals in gravitational-wave detectors
- Use and Abuse of the Fisher Information Matrix in the Assessment of Gravitational-Wave Parameter-Estimation Prospects
- Supermassive black hole formation during the assembly of pre-galactic discs
- Towards models of gravitational waveforms from generic binaries II: Modelling precession effects with a single effective precession parameter
- The Effect of Pair-Instability Mass Loss on Black Hole Mergers
- Very massive stars, pair-instability supernovae and intermediate-mass black holes with the SEVN code
- Illuminating Black Hole Binary Formation Channels with Spins in Advanced LIGO
- One Channel to Rule Them All? Constraining the Origins of Binary Black Holes using Multiple Formation Pathways
- The Dynamical Evolution of Stellar Black Holes in Globular Clusters
- Observational evidence for intermediate-mass black holes
- Towards models of gravitational waveforms from generic binaries: A simple approximate mapping between precessing and non-precessing inspiral signals
- Where are LIGO's Big Black Holes?
- Gravitational-Wave Astronomy with Inspiral Signals of Spinning Compact-Object Binaries
- GW190521 may be an intermediate mass ratio inspiral
- Fingerprints of binary black hole formation channels encoded in the mass and spin of merger remnants
- Gravitational waves from BH-NS binaries: Effective Fisher matrices and parameter estimation using higher harmonics
- A generalized precession parameter to interpret gravitational-wave data
- You Can't Always Get What You Want: The Impact of Prior Assumptions on Interpreting GW190412
- Parameter Estimation of Gravitational Waves from Precessing BH-NS Inspirals with higher harmonics
- Astrophysical Prior Information and Gravitational-wave Parameter Estimation
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- Tests of General Relativity with GWTC-3
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- GW241011 and GW241110: Exploring Binary Formation and Fundamental Physics with Asymmetric, High-Spin Black Hole Coalescence
- GW190521: tracing imprints of spin-precession on the most massive black hole binary
- Interplay of spin-precession and higher harmonics in the parameter estimation of binary black holes
- Measurability of precession and eccentricity for heavy binary-black-hole mergers
- Gravitational waves carry information beyond effective spin parameters but it is hard to extract
- Hints of spin-orbit resonances in the binary black hole population
- Spin Doctors: How to diagnose a hierarchical merger origin
- Analysis of GWTC-3 with fully precessing numerical relativity surrogate models
- GWSim: Python package for creating mock GW samples for different astrophysical populations and cosmological models of binary black holes
- One to many: comparing single gravitational-wave events to astrophysical populations
- Gravitational-wave Observations Suggest Most Black Hole Mergers Form in Triples
- Prospects for measuring off-axis spins of binary black holes with Plus-era gravitational-wave detectors
- Constraints on peculiar velocity distribution of binary black holes using gravitational waves with GWTC-3
- Distinguishing binary black hole precessional morphologies with gravitational wave observations
- A complete measurement of a black-hole recoil through higher-order gravitational-wave modes
- Probing intermediate-mass black hole binaries with the Lunar Gravitational-wave Antenna
- The impact of waveform systematics and Gaussian noise on the interpretation of GW231123
- Mapping Parameter Correlations in Spinning Binary Black Hole Mergers
- Probing Spin-Orbit Resonances with the Binary Black Hole Population
- Gravitational wave inference of star cluster properties from intermediate-mass black hole mergers
- A comprehensive look into the accuracy of SpEC binary black hole waveforms
- Measuring spin precession from massive black hole binaries with gravitational waves: insights from time-domain signal morphology
- Black-hole ringdown with templates capturing spin precession: A reanalysis of GW190521
- Characterization of merging black holes with two precessing spins
- No model-independent evidence for a peak in binary black hole spin (mis)alignments