When can gravitational-wave observations distinguish between black holes and neutron stars?
arXiv:1301.5616 · doi:10.1088/2041-8205/766/1/L14
Abstract
Gravitational-wave observations of compact binaries have the potential to uncover the distribution of masses and angular momenta of black holes and neutron stars in the universe. The binary components' physical parameters can be inferred from their effect on the phasing of the gravitational-wave signal, but a partial degeneracy between the components' mass ratio and their angular momenta limits our ability to measure the individual component masses. At the typical signal amplitudes expected by the Advanced Laser Interferometer Gravitational-wave Observatory (signal-to-noise ratios between 10 and 20), we show that it will in many cases be difficult to distinguish whether the components are neutron stars or black holes. We identify when the masses of the binary components could be unambiguously measured outside the range of current observations: a system with a chirp mass M would unambiguously contain the smallest-mass neutron star observed, and a system with $\mathcal{M} \ge 2.786 \Msun$ must contain a black hole. However, additional information would be needed to distinguish between a binary containing two 1.35 M neutron stars and an exotic neutron-star--black-hole binary. We also identify those configurations that could be unambiguously identified as black-hole binaries, and show how the observation of an electromagnetic counterpart to a neutron-star--black-hole binary could be used to constrain the black-hole spin.
5 pages, 4 figures. Final version to be published in Ap.J.Lett
References in corpus (6)
- Shapiro delay measurement of a two solar mass neutron star
- On IC 10 X-1, the Most Massive Known Stellar-Mass Black Hole
- Gravitational-Wave Astronomy with Inspiral Signals of Spinning Compact-Object Binaries
- Parameter estimation of spinning binary inspirals using Markov-chain Monte Carlo
- Magnetically-driven explosions of rapidly-rotating white dwarfs following Accretion-Induced Collapse
- The Spin Distribution of Millisecond X-ray Pulsars
Cited by in corpus (104)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- GW190412: Observation of a Binary-Black-Hole Coalescence with Asymmetric Masses
- Tidal Deformabilities and Radii of Neutron Stars from the Observation of GW170817
- Towards models of gravitational waveforms from generic binaries II: Modelling precession effects with a single effective precession parameter
- Stringent constraints on neutron-star radii from multimessenger observations and nuclear theory
- Prompt merger collapse and the maximum mass of neutron stars
- PyCBC Inference: A Python-based parameter estimation toolkit for compact binary coalescence signals
- Rates of Compact Object Coalescences
- Reconstructing the neutron-star equation of state with gravitational-wave detectors from a realistic population of inspiralling binary neutron stars
- Non-parametric inference of the neutron star equation of state from gravitational wave observations
- Pulsational pair-instability supernovae in very close binaries
- Observation of Gravitational Waves from the Coalescence of a Compact Object and a Neutron Star
- Exploring properties of high-density matter through remnants of neutron-star mergers
- Reconstructing phenomenological distributions of compact binaries via gravitational wave observations
- Multiband Gravitational-Wave Astronomy: Observing binary inspirals with a decihertz detector, B-DECIGO
- Observing Gravitational Waves From The Post-Merger Phase Of Binary Neutron Star Coalescence
- Revealing the high-density equation of state through binary neutron star mergers
- The impact of mass-transfer physics on the observable properties of field binary black hole populations
- Parameter estimation for binary neutron-star coalescences with realistic noise during the Advanced LIGO era
- Measuring the spin of black holes in binary systems using gravitational waves
- Error-analysis and comparison to analytical models of numerical waveforms produced by the NRAR Collaboration
- Revisiting the lower bound on tidal deformability derived by AT 2017gfo
- Radioactively Powered Emission from Black Hole-Neutron Star Mergers
- Anisotropic mass ejection from black hole-neutron star binaries: Diversity of electromagnetic counterparts
- Mergers of binary neutron stars with realistic spin
- Low-Latency Gravitational Wave Alerts for Multi-Messenger Astronomy During the Second Advanced LIGO and Virgo Observing Run
- The Black Hole Mass Function from Gravitational Wave Measurements
- Gravitational-wave observations of binary black holes: Effect of non-quadrupole modes
- Sub-radian-accuracy gravitational waveforms of coalescing binary neutron stars in numerical relativity
- The basic physics of the binary black hole merger GW150914
- Distinguishing compact binary population synthesis models using gravitational-wave observations of coalescing binary black holes
- Basic Parameter Estimation of Binary Neutron Star Systems by the Advanced LIGO/Virgo Network
- Ultra-luminous X-ray sources and neutron-star-black-hole mergers from very massive close binaries at low metallicity
- Can we measure individual black-hole spins from gravitational-wave observations?
- Inferring neutron star properties from GW170817 with universal relations
- The impact of stellar rotation on the black hole mass-gap from pair-instability supernovae
- An aligned-spin neutron-star--black-hole waveform model based on the effective-one-body approach and numerical-relativity simulations
- Prospects For High Frequency Burst Searches Following Binary Neutron Star Coalescence With Advanced Gravitational Wave Detectors
- Impact of Bayesian prior on the characterization of binary black hole coalescences
- GW190814: Spin and equation of state of a neutron star companion
- Measuring gravitational-wave higher-order modes
- First direct comparison of non-disrupting neutron star-black hole and binary black hole merger simulations
- Gravitational-wave cutoff frequencies of tidally disruptive neutron star-black hole binary mergers
- Search for Gravitational Waves Associated with Gamma-Ray Bursts During the First Advanced LIGO Observing Run and Implications for the Origin of GRB 150906B
- Constraints on the moment of inertia of PSR J0737-3039A from GW170817
- Discriminating between Neutron Stars and Black Holes with Imperfect Knowledge of the Maximum Neutron Star Mass
- Parameter estimation on gravitational waves from neutron-star binaries with spinning components
- Does Matter Matter? Using the mass distribution to distinguish neutron stars and black holes
- Coalescence of black hole--neutron star binaries
- Modelling Neutron Star-Black Hole Binaries: Future Pulsar Surveys and Gravitational Wave Detectors
- Two-harmonic approximation for gravitational waveforms from precessing binaries
- Constraints on the maximum mass of neutron stars with a quark core from GW170817 and NICER PSR J0030+0451 data
- On the possibility of GW190425 being a black hole--neutron star binary merger
- Spin-Precession: Breaking the Black Hole--Neutron Star Degeneracy
- The NINJA-2 project: Detecting and characterizing gravitational waveforms modelled using numerical binary black hole simulations
- Can we distinguish low mass black holes in neutron star binaries?
- Neutron stars versus black holes: probing the mass gap with LIGO/Virgo
- Relevance of tidal effects and post-merger dynamics for binary neutron star parameter estimation
- Statistical and systematic errors for gravitational-wave inspiral signals: A principal component analysis
- Distinguishing types of compact-object binaries using the gravitational-wave signatures of their mergers
- A brief overview of black hole-neutron star mergers
- Accuracy of gravitational waveform models for observing neutron-star--black-hole binaries in Advanced LIGO
- Parameter Estimation of Gravitational Waves from Precessing BH-NS Inspirals with higher harmonics
- Parameter estimation on compact binary coalescences with abruptly terminating gravitational waveforms
- On the Neutron Star-Black Hole Binaries Produced by Binary-driven-Hypernovae
- Detection and Parameter Estimation of Gravitational Waves from Compact Binary Inspirals with Analytical Double-Precessing Templates
- Advanced LIGO's ability to detect apparent violations of the cosmic censorship conjecture and the no-hair theorem through compact binary coalescence detections
- Testing the validity of the single-spin approximation in inspiral-merger-ringdown waveforms
- Parameter Estimation of Gravitational Waves from Nonprecessing BH-NS Inspirals with higher harmonics: Comparing MCMC posteriors to an Effective Fisher Matrix
- GRB/GW association: Long-short GRB candidates, time-lag, measuring gravitational wave velocity and testing Einstein's equivalence principle
- A more effective coordinate system for parameter estimation of precessing compact binaries from gravitational waves
- GW200115: a non-spinning black hole -- neutron star merger
- Modelling gravitational waves from precessing black-hole binaries: Progress, challenges and prospects
- Inferring the maximum and minimum mass of merging neutron stars with gravitational waves
- Gravitational Waveforms for Precessing, Quasicircular Compact Binaries with Multiple Scale Analysis: Small Spin Expansion
- Unequal-mass, highly-spinning binary black hole mergers in the stable mass transfer formation channel
- Interplay of spin-precession and higher harmonics in the parameter estimation of binary black holes
- Extended I-Love relations for slowly rotating neutron stars
- Statistical and systematic uncertainties in extracting the source properties of neutron star - black hole binaries with gravitational waves
- Distinguishing double neutron star from neutron star-black hole binary populations with gravitational wave observations
- Great Impostors: Extremely Compact, Merging Binary Neutron Stars in the Mass Gap Posing as Binary Black Holes
- Fast Parameter Estimation of Binary Mergers for Multimessenger Followup
- How serious can the stealth bias be in gravitational wave parameter estimation?
- The reliability of the low-latency estimation of binary neutron star chirp mass
- Black hole remnant of black hole-neutron star coalescing binaries with arbitrary black hole spin
- -mode Imprints in Gravitational Waves from Coalescing Binaries involving Aligned Spinning Neutron Stars
- The effect of spin mismodeling on gravitational-wave measurements of the binary neutron star mass distribution
- The Impact of Spin in Compact Binary Foreground Subtraction for Estimating the Residual Stochastic Gravitational-wave Background in Ground-based Detectors
- Intermediate-mass black hole binary parameter estimation with next-generation ground-based detector networks
- An upper limit on the spins of merging binary black holes formed through binary evolution
- Detectability of gravitational higher order modes in the third-generation era
- Rapid gravitational wave parameter estimation with a single spin: Systematic uncertainties in parameter estimation with the SpinTaylorF2 approximation
- Parameter estimation using a complete signal and inspiral templates for low mass binary black holes with Advanced LIGO sensitivity
- Nuclear physics with gravitational waves from neutron stars disrupted by black holes
- Compact Object Formation and the Supernova Explosion Engine
- Astrophysical Source Classification and Distance Estimation for PyCBC Live
- Efficient method for measuring the parameters encoded in a gravitational-wave signal
- The Impact of Astrophysical Priors on Parameter Inference for GW230529
- Accuracy in Measuring the Neutron Star Mass in Gravitational Wave Parameter Estimation for Black Hole-Neutron Star Binaries
- Numerical Relativity and the Discovery of Gravitational Waves
- Mapping Parameter Correlations in Spinning Binary Black Hole Mergers
- Mass function of stellar black holes as revealed by the LIGO-Virgo-KAGRA observations
- Connecting Numerical Relativity and Data Analysis of Gravitational Wave Detectors
- Characterizing Compact-object Binaries in the Lower Mass Gap with Gravitational Waves