Extracting equation of state parameters from black hole-neutron star mergers. I. Nonspinning black holes
arXiv:1109.3402 · doi:10.1103/PhysRevD.85.044061
Abstract
The late inspiral, merger, and ringdown of a black hole-neutron star (BHNS) system can provide information about the neutron-star equation of state (EOS). Candidate EOSs can be approximated by a parametrized piecewise-polytropic EOS above nuclear density, matched to a fixed low-density EOS; and we report results from a large set of BHNS inspiral simulations that systematically vary two parameters. To within the accuracy of the simulations, we find that, apart from the neutron-star mass, a single physical parameter Lambda, describing its deformability, can be extracted from the late inspiral, merger, and ringdown waveform. This parameter is related to the radius, mass, and l=2 Love number, k_2, of the neutron star by Lambda = 2k_2 R^5/3M_{NS}^5, and it is the same parameter that determines the departure from point-particle dynamics during the early inspiral. Observations of gravitational waves from BHNS inspiral thus restrict the EOS to a surface of constant Lambda in the parameter space, thickened by the measurement error. Using various configurations of a single Advanced LIGO detector, we find that neutron stars are distinguishable from black holes of the same mass and that Lambda^{1/5} or equivalently R can be extracted to 10-40% accuracy from single events for mass ratios of Q=2 and 3 at a distance of 100 Mpc, while with the proposed Einstein Telescope, EOS parameters can be extracted to accuracy an order of magnitude better.
21 pages, 14 figures, submitted to PRD
References in corpus (26)
- Shapiro delay measurement of a two solar mass neutron star
- Tidal Love numbers of neutron stars
- Constraining neutron star tidal Love numbers with gravitational wave detectors
- Constraints on a phenomenologically parameterized neutron-star equation of state
- Relativistic theory of tidal Love numbers
- Astrophysical Measurement of the Equation of State of Neutron Star Matter
- Post-1-Newtonian tidal effects in the gravitational waveform from binary inspirals
- Faithful Effective-One-Body waveforms of small-mass-ratio coalescing black-hole binaries
- An improved analytical description of inspiralling and coalescing black-hole binaries
- Simulating coalescing compact binaries by a new code SACRA
- Reducing orbital eccentricity in binary black hole simulations
- Spectral Representations of Neutron-Star Equations of State
- Fully General Relativistic Simulations of Black Hole-Neutron Star Mergers
- Using Full Information When Computing Modes of Post-Newtonian Waveforms From Inspiralling Compact Binaries in Circular Orbit
- Evolving black hole-neutron star binaries in general relativity using pseudospectral and finite difference methods
- Gravitational waves from spinning black hole-neutron star binaries: dependence on black hole spins and on neutron star equations of state
- Relativistic Simulations of Black Hole-Neutron Star Mergers: Effects of black-hole spin
- Effective-one-body waveforms calibrated to numerical relativity simulations: coalescence of non-precessing, spinning, equal-mass black holes
- Gravitational Recoil during Binary Black Hole Coalescence using the Effective One Body Approach
- Faithful Effective-One-Body waveforms of equal-mass coalescing black-hole binaries
- Analytic modelling of tidal effects in the relativistic inspiral of binary neutron stars
- Merger of black hole-neutron star binaries in full general relativity
- Merger of black hole and neutron star in general relativity: Tidal disruption, torus mass, and gravitational waves
- Black hole-neutron star mergers: effects of the orientation of the black hole spin
- Merger of black hole-neutron star binaries: nonspinning black hole case
- Complete phenomenological gravitational waveforms from spinning coalescing binaries
Cited by in corpus (120)
- Testing General Relativity with Present and Future Astrophysical Observations
- Masses, Radii, and Equation of State of Neutron Stars
- The Equation of State of Hot, Dense Matter and Neutron Stars
- The Einstein Toolkit: A Community Computational Infrastructure for Relativistic Astrophysics
- I-Love-Q Relations in Neutron Stars and their Applications to Astrophysics, Gravitational Waves and Fundamental Physics
- Measurability of the tidal polarizability of neutron stars in late-inspiral gravitational-wave signals
- Measuring the neutron star equation of state using X-ray timing
- Approximate Universal Relations for Neutron Stars and Quark Stars
- Systematic parameter errors in inspiraling neutron star binaries
- Nonparametric constraints on neutron star matter with existing and upcoming gravitational wave and pulsar observations
- Matter effects on binary neutron star waveforms
- Black Hole-Neutron Star Mergers: Disk Mass Predictions
- Demonstrating the feasibility of probing the neutron star equation of state with second-generation gravitational wave detectors
- Gravitational waves from neutron star mergers and their relation to the nuclear equation of state
- Constraining the neutron star equation of state with gravitational wave signals from coalescing binary neutron stars
- Nuclear forces and their impact on neutron-rich nuclei and neutron-rich matter
- Towards Understanding Astrophysical Effects of Nuclear Symmetry Energy
- Dynamical mass ejection from black hole-neutron star binaries
- Effective action approach to higher-order relativistic tidal interactions in binary systems and their effective one body description
- Black hole-neutron star mergers at realistic mass ratios: Equation of state and spin orientation effects
- r-Process Nucleosynthesis: Connecting Rare-Isotope Beam Facilities with the Cosmos
- Neutron star-black hole mergers with a nuclear equation of state and neutrino cooling: Dependence in the binary parameters
- Impact of Massive Binary Star and Cosmic Evolution on Gravitational Wave Observations I: Black Hole-Neutron Star Mergers
- Constraining the High-Density Behavior of Nuclear Symmetry Energy with the Tidal Polarizability of Neutron Stars
- Extracting equation of state parameters from black hole-neutron star mergers: aligned-spin black holes and a preliminary waveform model
- Measuring the neutron star tidal deformability with equation-of-state-independent relations and gravitational waves
- How Gravitational-wave Observations Can Shape the Gamma-ray Burst Paradigm
- Anisotropic mass ejection from black hole-neutron star binaries: Diversity of electromagnetic counterparts
- Search for gravitational waves associated with gamma-ray bursts during LIGO science run 6 and Virgo science runs 2 and 3
- Tidal Love numbers of a slowly spinning neutron star
- Tidal deformation of a slowly rotating material body. External metric
- Tidal Effects in the Post-Minkowskian Expansion
- Constraints on Nuclear Symmetry Energy Parameters
- Magnetized Neutron Stars With Realistic Equations of State and Neutrino Cooling
- Isolated and Binary Neutron Stars in Dynamical Chern-Simons Gravity
- General relativistic simulations of black hole-neutron star mergers: Effects of magnetic fields
- Sub-radian-accuracy gravitational waveforms of coalescing binary neutron stars in numerical relativity
- Binary Love Relations
- kiloHertz gravitational waves from binary neutron star remnants: time-domain model and constraints on extreme matter
- Multipole Love Relations
- Resonant tidal excitation of superfluid neutron stars in coalescing binaries
- The Science of the Einstein Telescope
- Tidal deformation of a slowly rotating black hole
- Dark stars: gravitational and electromagnetic observables
- Exploring tidal effects of coalescing binary neutron stars in numerical relativity
- Love can be Tough to Measure
- An aligned-spin neutron-star--black-hole waveform model based on the effective-one-body approach and numerical-relativity simulations
- I-Love-Q anisotropically: Universal relations for compact stars with scalar pressure anisotropy
- General relativistic simulations of binary black hole-neutron stars: Precursor electromagnetic signals
- Spectral Approach to the Relativistic Inverse Stellar Structure Problem II
- First direct comparison of non-disrupting neutron star-black hole and binary black hole merger simulations
- Frequency-domain gravitational waveform models for inspiraling binary neutron stars
- Scientific Potential of DECIGO Pathfinder and Testing GR with Space-Borne Gravitational Wave Interferometers
- Mining the Geodesic Equation for Scattering Data
- Coalescence of black hole--neutron star binaries
- Modelling Neutron Star-Black Hole Binaries: Future Pulsar Surveys and Gravitational Wave Detectors
- Tidal deformability of dressed black holes and tests of ultralight bosons in extended mass ranges
- Gravitomagnetic response of an irrotational body to an applied tidal field
- Tidal deformability of neutron and hyperon star with relativistic mean field equations of state
- Probing the Internal Composition of Neutron Stars with Gravitational Waves
- On the possibility of GW190425 being a black hole--neutron star binary merger
- Approximate Universal Relations among Tidal Parameters for Neutron Star Binaries
- Reducing orbital eccentricity in initial data of binary neutron stars
- A lower limit on the heat capacity of the neutron star core
- Gravitational waveforms from SpEC simulations : neutron star-neutron star and low-mass black hole-neutron star binaries
- Modelling frequency-dependent tidal deformability for environmental black-hole mergers
- Aligned spin neutron star-black hole mergers: a gravitational waveform amplitude model
- Transmuted Gravity Wave Signals from Primordial Black Holes
- A brief overview of black hole-neutron star mergers
- Constraining the equation of state of nuclear matter with gravitational wave observations: Tidal deformability and tidal disruption
- Can a black hole-neutron star merger explain GW170817, AT2017gfo, GRB170817A?
- Ranking Love numbers for the neutron star equation of state: The need for third-generation detectors
- Gravitomagnetic tidal resonance in neutron-star binary inspirals
- Black-hole remnants from black-hole--neutron-star mergers
- The Transient Gravitational-Wave Sky
- Advanced LIGO's ability to detect apparent violations of the cosmic censorship conjecture and the no-hair theorem through compact binary coalescence detections
- Constraining the neutron-matter equation of state with gravitational waves
- A new scheme for matching general relativistic ideal magnetohydrodynamics to its force-free limit
- Population properties and multimessenger prospects of neutron star-black hole mergers following GWTC-3
- Relativistic theory of surficial Love numbers
- Measuring neutron star tidal deformability with Advanced LIGO: a Bayesian analysis of neutron star - black hole binary observations
- Gravitomagnetic tidal effects in gravitational waves from neutron star binaries
- Tidal deformation of a slowly rotating material body: Interior metric and Love numbers
- Upper limit set by causality on the tidal deformability of a neutron star
- Growth rate of the tidal p-mode g-mode instability in coalescing binary neutron stars
- Pulsar spin-down luminosity: Simulations in general relativity
- Toward Realistic and Practical No-Hair Relations for Neutron Stars in the Non-Relativistic Limit
- Nonspinning black hole-neutron star mergers: a model for the amplitude of gravitational waveforms
- Probing the high-density behavior of symmetry energy with gravitational waves
- Dynamical response to a stationary tidal field
- On the validity of the adiabatic approximation in compact binary inspirals
- I-Love-Q Relations for Neutron Stars in dynamical Chern Simons Gravity
- The Black Hole Remnant of Black Hole-Neutron Star Coalescing Binaries
- Numerical-Relativity-Informed Effective-One-Body model for Black-Hole-Neutron-Star Mergers with Higher Modes and Spin Precession
- Properties of the remnant disk and the dynamical ejecta produced in low-mass black hole-neutron star mergers
- Neutron star-black hole mergers in next generation gravitational-wave observatories
- 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
- Constraining Unmodeled Physics with Compact Binary Mergers from GWTC-1
- Astrophysics, cosmology, and fundamental physics with compact binary coalescence and the Einstein Telescope
- Tidal Love numbers and approximate universal relations for fermion soliton stars
- Distinguishing binary neutron star from neutron star-black hole mergers with gravitational waves
- Self-force as probe of internal structure
- Solving the relativistic inverse stellar problem through gravitational waves observation of binary neutron stars
- Black hole remnant of black hole-neutron star coalescing binaries with arbitrary black hole spin
- Gravitomagnetic tidal currents in rotating neutron stars
- Constraining the Neutron Star Radius with Joint Gravitational-Wave and Short Gamma-Ray Burst Observations of Neutron Star-Black Hole Coalescing Binaries
- Nonrotating black hole in a post-Newtonian tidal environment II
- Multi-messenger prospects for black hole - neutron star mergers in the O4 and O5 runs
- Systematic effects from black hole-neutron star waveform model uncertainties on the neutron star equation of state
- Hidden symmetry between rotational tidal Love numbers of spinning neutron stars
- Black hole-neutron star mergers with massive neutron stars in numerical relativity
- Four-Hair Relations for Differentially Rotating Neutron Stars in the Weak-Field Limit
- Nonradial oscillations of stratified neutron stars with solid crusts: Mode characterization and tidal resonances in coalescing binaries
- Reducing orbital eccentricity in initial data of black hole--neutron star binaries in the puncture framework
- On the existence of deformations and dimensional reduction in wormholes and black holes
- Measurability of neutron star tidal deformability from merging neutron star-black hole binaries
- Tidal deformations of compact objects and gravitational wave emission
- Implications of nuclear interaction for nuclear structure and astrophysics within the relativistic mean-field model
- Impact and detectability of spin-tidal couplings in neutron star inspirals