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arXiv:2211.11697·v1·High Energy Physics — Phenomenology

Neutron stars and phase diagram from a double hard-wall

Lorenzo Bartolini🇨🇳 · Sven Bjarke Gudnason🇨🇳 · Josef Leutgeb🇦🇹 · Anton Rebhan🇦🇹

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Abstract

Description of nuclear matter in the core of neutron stars eludes the main tools of investigation of QCD, such as perturbation theory and the lattice formulation of the theory. Recently, the application of the holographic paradigm (both via top-down and bottom-up models) to this task has led to many encouraging results, both qualitatively and quantitatively. We present our approach to the description of neutron star cores, relying on a simple model of the (double) hard-wall type: we discuss results concerning the nature of homogeneous nuclear matter at high density emerging from the model including a quarkyonic phase, the mass-radius relation for neutron stars, as well as the rather stiff equation of state we have found. We show how, despite the very simple model employed, for an appropriate calibration we are able to obtain neutron stars that only slightly fall short of the observational bounds on radius and tidal deformability.

Comments: 8 pages, 4 figures. Contribution to the proceedings of the XVth Quark Confinement and the Hadron Spectrum, 1 to 6 August 2022, Stavanger, Norway. Based on arXiv:2202.12845

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