Bayesian Refinement of Relativistic Mean Field Models
ORAL
Abstract
The last five years have seen remarkable progress in our quest to determine the equation of state of neutron rich matter. Recent advances across the theoretical, experimental, and observational landscape have been incorporated in a Bayesian framework to refine existing covariant energy density functionals previously calibrated by the properties of finite nuclei. In particular, constraints on the maximum neutron star mass from pulsar timing, on stellar radii from the NICER mission, on tidal deformabilities from the LIGO-Virgo collaboration, and on the dynamics of pure neutron matter as predicted from chiral effective field theories, have resulted in significant refinements to the models, particularly to those predicting a stiff symmetry energy. In addition to this, we examine new appraoches in reproducing simultaneously the neutron skin thickness of both 208Pb and 48Ca recently reported by the PREX/CREX collaboration.
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Publication: https://arxiv.org/pdf/2301.09692.pdf
Presenters
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Marc Salinas
Florida State University
Authors
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Marc Salinas
Florida State University