A pitfall of piecewise-polytropic equation of state inference
arXiv:1804.09087 · doi:10.1093/mnras/sty1052
Abstract
The only messenger radiation in the Universe which one can use to statistically probe the Equation of State (EOS) of cold dense matter is that originating from the near-field vicinities of compact stars. Constraining gravitational masses and equatorial radii of rotating compact stars is a major goal for current and future telescope missions, with a primary purpose of constraining the EOS. From a Bayesian perspective it is necessary to carefully discuss prior definition; in this context a complicating issue is that in practice there exist pathologies in the general relativistic mapping between spaces of local (interior source matter) and global (exterior spacetime) parameters. In a companion paper, these issues were raised on a theoretical basis. In this study we reproduce a probability transformation procedure from the literature in order to map a joint posterior distribution of Schwarzschild gravitational masses and radii into a joint posterior distribution of EOS parameters. We demonstrate computationally that EOS parameter inferences are sensitive to the choice to define a prior on a joint space of these masses and radii, instead of on a joint space interior source matter parameters. We focus on the piecewise-polytropic EOS model, which is currently standard in the field of astrophysical dense matter study. We discuss the implications of this issue for the field.
16 pages, 9 figures. Accepted for publication in MNRAS
References in corpus (14)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Shapiro delay measurement of a two solar mass neutron star
- A Massive Pulsar in a Compact Relativistic Binary
- Gravitational-wave constraints on the neutron-star-matter Equation of State
- Constraints on a phenomenologically parameterized neutron-star equation of state
- Constraints on neutron star radii based on chiral effective field theory interactions
- Evidence for a maximum mass cut-off in the neutron star mass distribution and constraints on the equation of state
- Reconstructing the neutron-star equation of state with gravitational-wave detectors from a realistic population of inspiralling binary neutron stars
- Neutron star mass and radius measurements from atmospheric model fits to X-ray burst cooling tail spectra
- Compact stars with sequential QCD phase transitions
- Using Neutron Star Observations to Determine Crust Thicknesses, Moments of Inertia, and Tidal Deformabilities
- Causality and the speed of sound
- On parametrised cold dense matter equation of state inference
- Two coexisting families of compact stars: observational implications for millisecond pulsars
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- Gravitational waves from neutron star mergers and their relation to the nuclear equation of state
- Non-parametric inference of the neutron star equation of state from gravitational wave observations
- Equation of state sensitivities when inferring neutron star and dense matter properties
- Constraining the equation of state of high-density cold matter using nuclear and astronomical measurements
- Bayesian Inference of High-density Nuclear Symmetry Energy from Radii of Canonical Neutron Stars
- Constraining the dense matter equation of state with new NICER mass-radius measurements and new chiral effective field theory inputs
- Waveform systematics in the gravitational-wave inference of tidal parameters and equation of state from binary neutron star signals
- Was GW170817 a canonical neutron star merger? Bayesian analysis with a third family of compact stars
- Comparing two models for measuring the neutron star equation of state from gravitational-wave signals
- Neutron stars in gravity using realistic equations of state in the light of massive pulsars and GW170817
- Rapidly rotating -resonance-admixed hypernuclear compact stars
- Implicit correlations within phenomenological parametric models of the neutron star equation of state
- On parametrised cold dense matter equation of state inference
- Constraining the neutron star equation of state using Pulse Profile Modeling
- Trace of the energy-momentum tensor and macroscopic properties of neutron stars
- Hadron matter in neutron stars in view of gravitational wave observations
- Studying the parameters of the extended - model for neutron star matter
- Neutron stars and stellar mergers as a laboratory for dense QCD matter
- Equation-of-state-informed pulse profile modeling
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