GW190521: tracing imprints of spin-precession on the most massive black hole binary
arXiv:2310.01544 · doi:10.1103/PhysRevD.109.024024
Abstract
GW190521 is a remarkable gravitational-wave signal on multiple fronts: its source is the most massive black hole binary identified to date and could have spins misaligned with its orbit, leading to spin-induced precession -- an astrophysically consequential property linked to the binary's origin. However, due to its large mass, GW190521 was only observed during its final 3-4 cycles, making precession constraints puzzling and giving rise to alternative interpretations, such as eccentricity. Motivated by these complications, we trace the observational imprints of precession on GW190521 by dissecting the data with a novel time domain technique, allowing us to explore the morphology and interplay of the few observed cycles. We find that precession inference hinges on a quiet portion of the pre-merger data that is suppressed relative to the merger-ringdown. Neither pre-merger nor post-merger data alone are the sole driver of inference, but rather their combination: in the quasi-circular scenario, precession emerges as a mechanism to accommodate the lack of a stronger pre-merger signal in light of the observed post-merger. In terms of source dynamics, the pre-merger suppression arises from a tilting of the binary with respect to the observer. Establishing such a consistent picture between the source dynamics and the observed data is crucial for characterizing the growing number of massive binary observations and bolstering the robustness of ensuing astrophysical claims.
11 pages (excluding references), 9 figures
References in corpus (58)
- Array Programming with NumPy
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Advanced LIGO
- GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run
- GWTC-3: Compact Binary Coalescences Observed by LIGO and Virgo During the Second Part of the Third Observing Run
- GW190521: A Binary Black Hole Merger with a Total Mass of
- Pulsational Pair-Instability Supernovae
- Comparison of post-Newtonian templates for compact binary inspiral signals in gravitational-wave detectors
- Properties and astrophysical implications of the 150 Msun binary black hole merger GW190521
- Computationally efficient models for the dominant and sub-dominant harmonic modes of precessing binary black holes
- Open data from the first and second observing runs of Advanced LIGO and Advanced Virgo
- 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
- Illuminating Black Hole Binary Formation Channels with Spins in Advanced LIGO
- Open data from the third observing run of LIGO, Virgo, KAGRA and GEO
- Analysis of spin precession in binary black hole systems including quadrupole-monopole interaction
- One Channel to Rule Them All? Constraining the Origins of Binary Black Holes using Multiple Formation Pathways
- GW190521: orbital eccentricity and signatures of dynamical formation in a binary black hole merger signal
- Distinguishing Spin-Aligned and Isotropic Black Hole Populations With Gravitational Waves
- Hierarchical mergers of stellar-mass black holes and their gravitational-wave signatures
- Towards models of gravitational waveforms from generic binaries: A simple approximate mapping between precessing and non-precessing inspiral signals
- GW190521 as a merger of Proca stars: a potential new vector boson of eV
- The Pair-Instability Mass Gap for Black Holes
- Observational Black Hole Spectroscopy: A time-domain multimode analysis of GW150914
- Intermediate mass black holes in AGN disks II. Model predictions & observational constraints
- Evidence for hierarchical black hole mergers in the second LIGO--Virgo gravitational-wave catalog
- GW190521 as a dynamical capture of two nonspinning black holes
- The GW190521 Mass Gap Event and the Primordial Black Hole Scenario
- Testing the black-hole area law with GW150914
- Black hole genealogy: Identifying hierarchical mergers with gravitational waves
- Minding the gap: GW190521 as a straddling binary
- Four eccentric mergers increase the evidence that LIGO--Virgo--KAGRA's binary black holes form dynamically
- GW190521 may be an intermediate mass ratio inspiral
- General-relativistic precession in a black-hole binary
- Polluting the pair-instability mass gap for binary black holes through super-Eddington accretion in isolated binaries
- On the Origin of GW190521-like events from repeated black hole mergers in star clusters
- PESummary: the code agnostic Parameter Estimation Summary page builder
- The most ordinary formation of the most unusual double black hole merger
- Confusing Head-On Collisions with Precessing Intermediate-Mass Binary Black Hole Mergers
- Repeated mergers, mass-gap black holes, and formation of intermediate-mass black holes in nuclear star clusters
- A multimode quasi-normal spectrum from a perturbed black hole
- Eccentricity or spin precession? Distinguishing subdominant effects in gravitational-wave data
- A detailed analysis of GW190521 with phenomenological waveform models
- High Eccentricities and High Masses Characterize Gravitational-wave Captures in Galactic Nuclei as Seen by Earth-based Detectors
- Subtracting glitches from gravitational-wave detector data during the third observing run
- A generalized precession parameter to interpret gravitational-wave data
- The Stellar Merger Scenario for Black Holes in the Pair-instability Gap
- Precession during merger 1: Strong polarization changes are observationally accessible features of strong-field gravity during binary black hole merger
- Modelling the Ringdown from Precessing Black Hole Binaries
- Identifying when Precession can be Measured in Gravitational Waveforms
- Measuring the spins of heavy binary black holes
- New effective precession spin for modeling multimodal gravitational waveforms in the strong-field regime
- Ringdown frequencies in black holes formed from precessing black-hole binaries
- Understanding how fast black holes spin by analysing data from the second gravitational-wave catalogue
- Measurability of precession and eccentricity for heavy binary-black-hole mergers
- Coherent Gravitational Waveforms and Memory from Cosmic String Loops
- Spectroscopy for asymmetric binary black hole mergers
- Constraining black-hole binary spin precession and nutation with sequential prior conditioning
Cited by in corpus (22)
- GW250114: testing Hawking's area law and the Kerr nature of black holes
- Towards a Non-singular Paradigm of Black Hole Physics
- Possible Causes of False General Relativity Violations in Gravitational Wave Observations
- Blind spots and biases: the dangers of ignoring eccentricity in gravitational-wave signals from binary black holes
- Searching for ringdown higher modes with a numerical relativity-informed post-merger model
- The anti-aligned spin of GW191109: glitch mitigation and its implications
- Gravitational waves carry information beyond effective spin parameters but it is hard to extract
- Analyzing black-hole ringdowns II: data conditioning
- Structure and Skewness of the Effective Inspiral Spin Distribution of Binary Black Hole Mergers
- Natal kicks of compact objects
- Eccentricity evolution consistency test to distinguish eccentric gravitational-wave signals from eccentricity mimickers
- The impact of waveform systematics and Gaussian noise on the interpretation of GW231123
- The Nature of Gravitational Wave Events with Host Environment Escape Velocities
- Inferring the spins of merging black holes in the presence of data-quality issues
- Mapping Parameter Correlations in Spinning Binary Black Hole Mergers
- Ten years of extreme gravity tests of general theory of relativity with gravitational-wave observations
- Glitches far from transient gravitational-wave events do not bias inference
- A comprehensive look into the accuracy of SpEC binary black hole waveforms
- Black-hole ringdown with templates capturing spin precession: A reanalysis of GW190521
- When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals
- Measuring spin precession from massive black hole binaries with gravitational waves: insights from time-domain signal morphology
- The Missing Multipole Problem: Investigating biases from model starting frequency in gravitational-wave analyses