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Hyperonic uncertainties in neutron stars, mergers and supernovae

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arxiv 2309.14879 v2 pith:JNMMARGD submitted 2023-09-26 astro-ph.HE nucl-th

Hyperonic uncertainties in neutron stars, mergers and supernovae

classification astro-ph.HE nucl-th
keywords hyperonicneutronuncertaintiesfsu2hmergerssimulationssupernovaeastrophysical
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this work we delve into the temperature-dependent Equation of State (EoS) of baryonic matter within the framework of the FSU2H$^*$ hadronic model, which comprehensively incorporates hyperons and is suitable for relativistic simulations of neutron star mergers and supernovae. To assess the impact of the uncertainties in the hyperonic sector on astrophysical observables, we introduce two additional models, namely FSU2H$^*$L and FSU2H$^*$U. These models cover the entire spectrum of variability of hyperonic potentials, as derived from experimental data. Our investigations reveal that these uncertainties extend their influence not only to the relative abundances of various particle species but also to the EoS itself and, consequently, have an impact on the global properties of both cold and hot neutron stars. Notably, their effects become more pronounced at large temperatures, owing to the increased presence of hyperons. These findings have direct implications for the outcomes of relativistic simulations of neutron star mergers and supernovae, emphasizing the need of accounting for hyperonic uncertainties to ensure the accuracy and reliability of such simulations in astrophysical contexts.

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