Uncertainties in the pasta-phase properties of catalysed neutron stars
arXiv:2109.13638 · doi:10.1051/0004-6361/202141192
Abstract
The interior of a neutron star is expected to exhibit different states of matter. In particular, complex non-spherical configurations known as `pasta' phases may exist at the highest densities in the inner crust, potentially having an impact on different neutron-star phenomena. We study the properties of the pasta phase and the uncertainties in the pasta observables which are due to our incomplete knowledge of the nuclear energy functional. To this aim, we employed a compressible liquid-drop model approach with surface parameters optimised either on experimental nuclear masses or theoretical calculations. To assess the model uncertainties, we performed a Bayesian analysis by largely varying the model parameters using uniform priors, and generating posterior distributions with filters accounting for both our present low-density nuclear physics knowledge and high-density neutron-star physics constraints. Our results show that the nuclear physics constraints, such as the neutron-matter equation of state at very low density and the experimental mass measurements, are crucial in determining the crustal and pasta observables. Accounting for all constraints, we demonstrate that the presence of pasta phases is robustly predicted in an important fraction of the inner crust. We estimate the relative crustal thickness associated with pasta phases as and the relative moment of inertia as . Our findings indicate that the surface and curvature parameters are more influential than the bulk parameters for the description of pasta observables. We also show that using a surface tension that is inconsistent with the bulk functional leads to an underestimation of both the average values and the uncertainties in the pasta properties, thus highlighting the importance of a consistent calculation of the nuclear functional.
12 pages, 8 figures, accepted for publication in Astronomy and Astrophysics. Typos corrected
References in corpus (14)
- PSR J0030+0451 Mass and Radius from NICER Data and Implications for the Properties of Neutron Star Matter
- Implications of PREX-II on the equation of state of neutron-rich matter
- Disordered nuclear pasta, magnetic field decay, and crust cooling in neutron stars
- Direct Astrophysical Tests of Chiral Effective Field Theory at Supranuclear Densities
- Probing the Equation of State of Nuclear Matter via Neutron Star Asteroseismology
- Gravitational-wave constraints on the equatorial ellipticity of millisecond pulsars
- Confronting gravitational-wave observations with modern nuclear physics constraints
- Unified equations of state for cold non-accreting neutron stars with Brussels-Montreal functionals. II. Pasta phases in semi-classical approximation
- Crystallization of the outer crust of a non-accreting neutron star
- Liquid-gas coexistence vs. energy minimization with respect to the density profile in the inhomogeneous inner crust of neutron stars
- Fast neutrino cooling of nuclear pasta in neutron stars: molecular dynamics simulations
- Comparison between the Thomas-Fermi and Hartree-Fock-Bogoliubov Methods in the Inner Crust of a Neutron Star: The Role of Pairing Correlations
- Systematic analysis of inner crust composition using the extended Thomas-Fermi approximation with pairing correlations
- Parametrization of the surface energy in the ETF approximation
Cited by in corpus (38)
- Dense Nuclear Matter Equation of State from Heavy-Ion Collisions
- Nucleonic metamodelling in light of multimessenger, PREX-II and CREX data
- Nuclear physics constraints from binary neutron star mergers in the Einstein Telescope era
- Unified neutron star EOSs and neutron star structures in RMF models
- Bayesian reconstruction of nuclear matter parameters from the equation of state of neutron star matter
- Nearly model-independent constraints on dense matter equation of state in a Bayesian approach
- Dense Matter in Neutron Stars with eXTP
- Inference of neutron-star properties with unified crust-core equations of state for parameter estimation
- The effect of the energy functional on the pasta-phase properties of catalysed neutron stars
- A Bayesian analysis of the properties of hybrid stars with the NJL model
- Pasta properties of the neutron star within effective relativistic mean-field model
- Unified nuclear matter EOSs constrained by the in-medium balance in density-dependent covariant density functionals
- Unified equations of state for cold non-accreting neutron stars with Brussels-Montreal functionals. IV. Role of the symmetry energy in pasta phases
- Detectability of a phase transition in neutron star matter with third-generation gravitational wave interferometers
- S pairing gaps, chemical potential and entrainment matrix in superfluid neutron-star cores for the Brussels-Montreal functionals
- From neutron skins and neutron matter to the neutron star crust
- Unified equations of state for cold nonaccreting neutron stars with Brussels-Montreal functionals. V. Improved parametrization of the nucleon density distributions
- The proto-neutron star inner crust in the liquid phase
- Magnetised neutron star crust within effective relativistic mean-field model
- Frozen and -equilibrated and modes of cold neutron stars: nuclear metamodel predictions
- Neutron star inner crust: reduction of shear modulus by nuclei finite size effect
- The proto-neutron star inner crust in a multi-component plasma approach
- Superfluid fraction in the slab phase of the inner crust of neutron stars
- Ensembles of unified crust and core equations of state in a nuclear-multimessenger astrophysics environment
- Bayesian Analysis of the Neutron Star Equation of State and Model Comparison: Insights from PSR J0437+4715, PSR J0614+3329, and Other Multi-Physics Data
- Stability of spherical nuclei in the inner crust of neutron stars
- Bayesian inference of neutron star crust properties using an ab initio-benchmarked meta-model
- Light clusters in the liquid proto-neutron star inner crust
- Crust (Unified) Tool for Equation-of-state Reconstruction (CUTER) v2
- Superfluid fraction in the rod phase of the inner crust of neutron stars
- Elasticity of neutron star mantle: improved compressible liquid drop model for cylindrical phases
- Dynamics of dilute nuclear matter with light clusters and in-medium effects
- Effect of the equation of state for dilute neutron matter on the composition of the inner crust of neutron stars
- Nuclear physics inputs for dense-matter modelling in neutron stars. The nuclear equation of state
- Neutron Star Inner Crust at Finite Temperatures: A Comparison Between Compressible Liquid Drop and Extended Thomas-Fermi Approaches
- Properties and microscopic structures of dense stellar matter in RMF models
- The effect of multiple extra dimensions on the maximal mass of compact stars in Kaluza-Klein space-time
- The nuclear matter density functional under the nucleonic hypothesis