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arXiv:2112.12629·v3·High Energy Astrophysical Phenomena

Influence of the nuclear symmetry energy slope on observables of compact stars with -admixed hypernuclear matter

Vivek Baruah Thapa🇮🇳 · Monika Sinha🇮🇳

Abstract

In this work, we study the effects of nuclear symmetry energy slope on neutron star dense matter equation of state and its impact on neutron star observables (mass-radius, tidal response). We construct the equation of state within the framework of covariant density functional theory implementing coupling schemes of non-linear and density-dependent models with viability of heavier non-nucleonic degrees of freedom. The slope of symmetry energy parameter () is adjusted following density-dependence of isovector meson coupling to baryons. We find that smaller values of at saturation favour early appearance of -resonances in comparison to hyperons leading to latter's threshold at higher matter densities. We also investigate the dependence of on tidal deformability and compactness parameter of a neutron star for different equation of states and observe similar converging behaviour for larger values.

Comments: 14 pages, 10 figures, 8 tables; corrected some typos; matches with published version

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