Bayesian inferences on covariant density functionals from multimessenger astrophysical data: Influences of parametrizations of density dependent couplings
arXiv:2512.01503 · doi:10.1103/n336-1sqq
Abstract
Covariant density functionals have been successfully applied to the description of finite nuclei and dense nuclear matter. These functionals are often constructed by introducing density dependence into the nucleon-meson couplings, typically through functions that depend only on the vector, i.e., proper baryon density. In this work, we employ a Bayesian framework to investigate how different parametrizations, characterized by distinct functional forms and by their dependencies on vector and scalar densities, affect the properties of dense matter and compact stars. Our analysis demonstrates that although all considered parametrizations yield broadly comparable inferences, the differences in the equation of state and the symmetry energy remain significant at suprasaturation densities, reflecting the sensitivity to the chosen functional form of the density dependence. We find that allowing the nuclear saturation properties in the isoscalar channel, including the skewness coefficient , to be freely adjusted provides adequate flexibility for the current modeling of nuclear and neutron star matter. In contrast, the isovector channel requires further refinement, with freedom extended at least up to the curvature coefficient to capture variations in the symmetry energy and particle composition at high densities. This work advances prior studies by implementing a rational-function parametrization of the density dependence, informed and constrained by multimessenger astrophysical observations.
v2: 13 pages, 5 figures, expanded discussion, matches published version
References in corpus (74)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- A Massive Pulsar in a Compact Relativistic Binary
- GW170817: Measurements of Neutron Star Radii and Equation of State
- GW190814: Gravitational Waves from the Coalescence of a 23 M Black Hole with a 2.6 M Compact Object
- PSR J0030+0451 Mass and Radius from NICER Data and Implications for the Properties of Neutron Star Matter
- A NICER View of PSR J0030+0451: Millisecond Pulsar Parameter Estimation
- GW190425: Observation of a Compact Binary Coalescence with Total Mass
- Tidal Love numbers of neutron stars
- Properties of the binary neutron star merger GW170817
- Constraining neutron star tidal Love numbers with gravitational wave detectors
- A NICER View of the Massive Pulsar PSR J0740+6620 Informed by Radio Timing and XMM-Newton Spectroscopy
- Equations of state for supernovae and compact stars
- Equation of state and neutron star properties constrained by nuclear physics and observation
- New parametrization for the nuclear covariant energy density functional with point-coupling interaction
- Accurate Determination of the Neutron Skin Thickness of Pb through Parity-Violation in Electron Scattering
- Relativistic Nuclear Energy Density Functionals: Mean-Field and Beyond
- Implications of PREX-II on the equation of state of neutron-rich matter
- Rapid Cooling of the Neutron Star in Cassiopeia A Triggered by Neutron Superfluidity in Dense Matter
- The Cooling of Compact Stars
- Constraints on the high-density nuclear equation of state from the phenomenology of compact stars and heavy-ion collisions
- Nonparametric constraints on neutron star matter with existing and upcoming gravitational wave and pulsar observations
- Chiral interactions up to next-to-next-to-next-to-leading order and nuclear saturation
- Precision Determination of the Neutral Weak Form Factor of Ca
- Chiral Three-Nucleon Interactions in Light Nuclei, Neutron- Scattering, and Neutron Matter
- Neutron stars - cooling and transport
- A NICER View of the Nearest and Brightest Millisecond Pulsar: PSR J0437$\unicode{x2013}$4715
- A NICER view of PSR J0030+0451: Implications for the dense matter equation of state
- Mapping crustal heating with the cooling lightcurves of quasi-persistent transients
- On the Sound Speed in Neutron Stars
- An updated mass-radius analysis of the 2017-2018 NICER data set of PSR J0030+0451
- Impact of the PSR J0740+6620 radius constraint on the properties of high-density matter
- How perturbative QCD constrains the Equation of State at Neutron-Star densities
- The Radius of the High-mass Pulsar PSR J0740+6620 with 3.6 yr of NICER Data
- The equation of state for dense nucleonic matter from a meta-modeling. II. Predictions for neutron stars properties
- Multimessenger constraints for ultra-dense matter
- Information content of the parity-violating asymmetry in Pb
- Ab-initio QCD calculations impact the inference of the neutron-star-matter equation of state
- Cooling of Neutron Stars. Hadronic Model
- GW190814's secondary component with mass M as a super-fast pulsar
- Heavy Baryons in Compact Stars
- Constraining the dense matter equation of state with new NICER mass-radius measurements and new chiral effective field theory inputs
- Nuclear equation of state for arbitrary proton fraction and temperature based on chiral effective field theory and a Gaussian process emulator
- A NICER View of PSR J12311411: A Complex Case
- Relativistic description of dense matter equation of state and compatibility with neutron star observables: a Bayesian approach
- Implications from GW170817 for -isobar admixed hypernuclear compact stars
- Determination of the Equation of State from Nuclear Experiments and Neutron Star Observations
- Bayesian Inference of Dense Matter Equation of State within Relativistic Mean Field Models using Astrophysical Measurements
- Dirac-Brueckner-Hartree-Fock calculations for isospin asymmetric nuclear matter based on improved approximation schemes
- Maximum gravitational mass inferred at about precision with multimessenger data of neutron stars
- Rapid neutrino cooling in the neutron star MXB 1659-29
- Evidence against a strong first-order phase transition in neutron star cores: impact of new data
- Population synthesis as a probe of neutron star thermal evolution
- Statistical theory of thermal evolution of neutron stars
- Spanning the full range of neutron star properties within a microscopic description
- Nuclear matter in the crust of neutron stars derived from realistic NN interactions
- Statistical theory of thermal evolution of neutron stars - II. Limitations on direct Urca threshold
- A NICER view of the 1.4 solar-mass edge-on pulsar PSR J0614-3329
- Hypernuclear stars from relativistic Hartree-Fock density functional theory
- Constraining compact star properties with nuclear saturation parameters
- A Bayesian inference of relativistic mean-field model for neutron star matter from observation of NICER and GW170817/AT2017gfo
- Nucleonic metamodelling in light of multimessenger, PREX-II and CREX data
- Covariant Density Functional Theory in Nuclear Physics and Astrophysics
- Bayesian Inference of the Dense Matter Equation of State built upon Covariant Density Functionals
- Bayesian refinement of covariant energy density functionals
- Bayesian inference of neutron-star observables based on effective nuclear interactions
- Universal relations for compact stars with heavy baryons
- Simultaneous Fitting of Neutron Star Structure and Cooling Data
- Bayesian inference of the dense matter equation of state built upon extended Skyrme interactions
- New covariant density functionals of nuclear matter for compact star simulations
- Bayesian constraints on covariant density functional equations of state of compact stars with new NICER mass-radius measurements
- Bayesian Inference of dense matter equation of state of neutron star with antikaon condensation
- Bayesian inferences on covariant density functionals from multimessenger astrophysical data: Nucleonic models
- The nucleardatapy toolkit for simple access to experimental nuclear data, astrophysical observations, and theoretical predictions
- Nucleon- elastic cross section in isospin-asymmetric nuclear medium with inclusion of scalar-isovector meson field