Density functional approach to quark matter with confinement and color superconductivity
Oleksii Ivanytskyi, David Blaschke
DOI 10.1103/PhysRevD.105.114042 · Physical Review D
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Abstract
We present a novel relativistic density-functional approach to modeling quark matter with a mechanism to mimic confinement. The quasiparticle treatment of quarks provides their suppression due to a large quark self energy already at the mean-field level. We demonstrate that our approach is equivalent to a chiral quark model with medium-dependent couplings. The dynamical restoration of the chiral symmetry is ensured by construction of the density functional. Supplemented with the vector repulsion and diquark pairing, the model is applied to construct a hybrid quark-hadron equation of state of cold compact-star matter. We study the connection of such a hybrid equation of state with the stellar mass-radius relation and tidal deformability. The model results are compared to various observational constraints, including the NICER radius measurement of PSR J0740+6620 and the tidal deformability constraint from GW170817. As a striking result, we present selected parametrizations for which the hybrid star sequence reaches masses in the range 2.5–2.67 M⊙ of the lighter object in the merger GW190814, which therefore might be interpreted as the heaviest neutron star with to date.
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