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Quark-hadron crossover equations of state for neutron stars: constraining the chiral invariant mass in a parity doublet model

Published 27 Nov 2020 in nucl-th, astro-ph.HE, and hep-ph | (2011.13684v3)

Abstract: We construct an equation of state (EOS) for neutron stars by interpolating hadronic EOS at low density and quark EOS at high density. A hadronic model based on the parity doublet structure is used for hadronic matter and a quark model of Nambu--Jona-Lasinio type is for quark matter. We assume crossover between hadronic matter and quark matter in the the color-flavor locked phase. The nucleon mass of the parity doublet model has a mass associated with the chiral symmetry breaking, and a chiral invariant mass m0m_0 which is insensitive to the chiral condensate. The value of m0m_0 affects the nuclear EOSs at low density, and has strong correlations with the radii of neutron stars. Using the constraint to the radius obtained by LIGO-Virgo and NICER, we find that m0m_0 is restricted as 600 MeV≲m0≲900 MeV600\,\mathrm{MeV}\lesssim m_0 \lesssim 900\,\mathrm{MeV}.

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