The impact of the crust equation of state on the analysis of GW170817
arXiv:1902.04616 · doi:10.1088/1361-6382/ab5ba4
Abstract
The detection of GW170817, the first neutron star-neutron star merger observed by Advanced LIGO and Virgo, and its following analyses represent the first contributions of gravitational wave (GW) data to understanding dense matter. Parameterizing the high density section of the equation of state (EOS) of both neutron stars through spectral decomposition, and imposing a lower limit on the maximum mass value, led to an estimate of the stars' radii of km and km. These values do not, however, take into account any uncertainty owed to the choice of the crust low-density EOS, which was fixed to reproduce the SLy EOS model. We here re-analyze GW170817 data and establish that different crust models do not strongly impact the mass or tidal deformability of a neutron star: it is impossible to distinguish between low-density models with GW analysis. However, the crust does have an effect on the inferred radius. We predict the systematic error due to this effect using neutron star structure equations, and compare the prediction to results from full parameter estimation runs. For GW170817, this systematic error affects the radius estimate by 0.3 km, approximately of the NS radii.
11 pages, 6 figures
References in corpus (21)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Advanced LIGO
- Tidal Love numbers of neutron stars
- Constraining neutron star tidal Love numbers with gravitational wave detectors
- Swope Supernova Survey 2017a (SSS17a), the Optical Counterpart to a Gravitational Wave Source
- Robust parameter estimation for compact binaries with ground-based gravitational-wave observations using the LALInference software library
- The X-ray counterpart to the gravitational wave event GW 170817
- Constraints on a phenomenologically parameterized neutron-star equation of state
- A Radio Counterpart to a Neutron Star Merger
- Modeling GW170817 based on numerical relativity and its implications
- Constraints on the Symmetry Energy Using the Mass-Radius Relation of Neutron Stars
- Modeling the dynamics of tidally-interacting binary neutron stars up to merger
- Towards models of gravitational waveforms from generic binaries: A simple approximate mapping between precessing and non-precessing inspiral signals
- Reconstructing the neutron-star equation of state with gravitational-wave detectors from a realistic population of inspiralling binary neutron stars
- Spectral Representations of Neutron-Star Equations of State
- Symmetry Energy III: Isovector Skins
- Partial accretion in the propeller stage of low mass X-ray binary Aql X--1
- Accreting black hole binaries in globular clusters
- Sensitivity to Thermonuclear Reaction Rates in Modeling the Abundance Anomalies of NGC 2419
- High-cadence, High-resolution Spectroscopic Observations of Herbig Stars HD 98922 and V1295 Aquila
Cited by in corpus (36)
- Neutron star tidal deformability and equation of state constraints
- Stellar structure models in modified theories of gravity: lessons and challenges
- Gravitational waves from neutron star mergers and their relation to the nuclear equation of state
- Nonparametric Inference of Neutron Star Composition, Equation of State, and Maximum Mass with GW170817
- Towards Understanding Astrophysical Effects of Nuclear Symmetry Energy
- Constraining the equation of state of high-density cold matter using nuclear and astronomical measurements
- Interpreting Binary Neutron Star Mergers: Describing the Binary Neutron Star Dynamics, Modelling Gravitational Waveforms, and Analyzing Detections
- Modeling Kilonova Light Curves: Dependence on Nuclear Inputs
- A Detailed Examination of Astrophysical Constraints on the Symmetry Energy and the Neutron Skin of Pb with Minimal Modeling Assumptions
- A Parametrized Equation of State for Neutron Star Matter with Continuous Sound Speed
- Towards mitigation of apparent tension between nuclear physics and astrophysical observations by improved modeling of neutron star matter
- Impact of PREX-II and combined Radio/NICER/XMM-Newton's mass-radius measurement of PSRJ0740+6620 on the dense matter equation of state
- Extreme Matter meets Extreme Gravity: Ultra-heavy neutron stars with crossovers and first-order phase transitions
- Imposing multi-physics constraints at different densities on the Neutron Star Equation of State
- Multi-physics constraints at different densities to probe nuclear symmetry energy in hyperonic neutron stars
- Mirror Neutron Stars
- Frequency deviations in universal relations of isolated neutron stars and postmerger remnants
- Simultaneous Inference of Neutron Star Equation of State and the Hubble Constant with a Population of Merging Neutron Stars
- Implicit correlations within phenomenological parametric models of the neutron star equation of state
- The Radius of PSR J0740+6620 from NICER and XMM-Newton Data
- Parameter estimation for strong phase transitions in supranuclear matter using gravitational-wave astronomy
- Degeneracy in the inference of phase transitions in the neutron star equation of state from gravitational wave data
- Systematic biases due to waveform mismodeling in parametrized post-Einsteinian tests of general relativity: The impact of neglecting spin precession and higher modes
- Hadron matter in neutron stars in view of gravitational wave observations
- Role of the crust on the tidal deformability of a neutron star within a unified treatment of dense matter
- Nuclear pasta structures and symmetry energy
- Bayesian Inference of dense matter equation of state of neutron star with antikaon condensation
- Tidal Deformability Doppelgangers: Implications of a low-density phase transition in the neutron star equation of state
- Relativistic correction to the r-mode frequency in light of multi-messenger constraints
- Probe and Prejudice: Classification of compact objects and model comparison using EOS knowledge
- The key factor to determine the relation between radius and tidal deformability of neutron stars: slope of symmetry energy
- Ensembles of unified crust and core equations of state in a nuclear-multimessenger astrophysics environment
- Nuclear pasta structures at high temperatures
- Investigating the role of nuclear parameters in Neutron Star oscillations: a model comparison
- Probing Fundamental Physics with Gravitational Waves
- Joint Inference of Population, Cosmology, and Neutron Star Equation of State from Gravitational Waves of Dark Binary Neutron Stars