Properties of the neutron star crust informed by nuclear structure data

Fuente: arXiv
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Main Authors: Klausner, Pietro, Antonelli, Marco, Gulminelli, Francesca
Format: Preprint
Published: 2025
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author Klausner, Pietro
Antonelli, Marco
Gulminelli, Francesca
author_facet Klausner, Pietro
Antonelli, Marco
Gulminelli, Francesca
contents We perform a Bayesian analysis of the neutron star (NS) equation of state (EoS) based on a wide set of Skyrme functionals, derived from previous nuclear physics inferences. The novelty of this approach lies in starting from the full multidimensional posterior distribution of nuclear matter parameters, consistent with a comprehensive set of static and dynamic nuclear structure observables. We construct unified EoSs for $npeμ$ matter, where the inner crust of the NS is treated using an extended Thomas-Fermi method, providing for the first time a fully consistent Bayesian treatment of the correlation of bulk with surface as well as with spin-orbit and effective mass parameters. We then employ a standard Bayesian framework to identify those EoSs that satisfy astrophysical constraints from NS mass measurements, the tidal deformability from GW170817, and NICER mass-radius observations. We also examine NS observables, such as the crustal moment of inertia, which is crucial in understanding pulsar glitches. Compared to previous works, we observe an increase in both the NS surface thickness and the crustal moment of inertia.
format Preprint
id arxiv_https___arxiv_org_abs_2505_16929
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Properties of the neutron star crust informed by nuclear structure data
Klausner, Pietro
Antonelli, Marco
Gulminelli, Francesca
Nuclear Theory
High Energy Astrophysical Phenomena
We perform a Bayesian analysis of the neutron star (NS) equation of state (EoS) based on a wide set of Skyrme functionals, derived from previous nuclear physics inferences. The novelty of this approach lies in starting from the full multidimensional posterior distribution of nuclear matter parameters, consistent with a comprehensive set of static and dynamic nuclear structure observables. We construct unified EoSs for $npeμ$ matter, where the inner crust of the NS is treated using an extended Thomas-Fermi method, providing for the first time a fully consistent Bayesian treatment of the correlation of bulk with surface as well as with spin-orbit and effective mass parameters. We then employ a standard Bayesian framework to identify those EoSs that satisfy astrophysical constraints from NS mass measurements, the tidal deformability from GW170817, and NICER mass-radius observations. We also examine NS observables, such as the crustal moment of inertia, which is crucial in understanding pulsar glitches. Compared to previous works, we observe an increase in both the NS surface thickness and the crustal moment of inertia.
title Properties of the neutron star crust informed by nuclear structure data
topic Nuclear Theory
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2505.16929