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Framework for Multi-messenger Inference from Neutron Stars: Combining Nuclear Theory Priors

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arxiv 2306.04386 v2 pith:J2UBF2MM submitted 2023-06-07 astro-ph.HE nucl-thphysics.data-an

classification astro-ph.HEnucl-thphysics.data-an
keywords neutronconstraintsobservationsparameterizationcalculationsframeworkinferencemodels
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abstract

We construct an efficient parameterization of the pure neutron-matter equation of state (EoS) that incorporates the uncertainties from both chiral effective field theory ($\chi$EFT) and phenomenological potential calculations. This parameterization yields a family of EoSs including and extending the forms based purely on these two calculations. In combination with an agnostic inner core EoS, this parameterization is used in a Bayesian inference pipeline to obtain constraints on the e os parameters using multi-messenger observations of neutron stars. We specifically considered observations of the massive pulsar J0740+6620, the binary neutron star coalescence GW170817, and the NICER pulsar J0030+0451. Constraints on neutron star mass-radius relations are obtained and compared. The Bayes factors for the different EoS models are also computed. While current constraints do not reveal any significant preference among these models, the framework developed here may enable future observations with more sensitive detectors to discriminate them.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Prospect of Constraining the EoS of Neutron Stars Using Post-Merger Signals

    astro-ph.HE 2025-05 reject novelty 5.0 of 10

    Combining BAYESTACK radius posteriors for four masses through a common piecewise-polytrope EoS forecasts ~1 km (uniform prior) or ~0.55 km (astrophysical prior) radius constraints from A+ era post-merger signals.

  2. PSR J0952-0607: Probing the Stiffest Equations of State and r-Mode Suppression Mechanisms

    astro-ph.HE 2025-02 conditional novelty 5.0 of 10

    Using the 709.2 Hz spin of PSR J0952-0607 in Bayesian equation-of-state inference shifts its inferred non-rotating mass to 2.10+0.25-0.24 Msun and makes r-mode stability depend on crust rigidity.

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