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Quantum van der Waals quarkyonic matter at non-zero isospin asymmetry

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arxiv 2411.11996 v1 pith:RWTGM62F submitted 2024-11-18 nucl-th astro-ph.HEhep-ph

Quantum van der Waals quarkyonic matter at non-zero isospin asymmetry

classification nucl-th astro-ph.HEhep-ph
keywords matterisospinquarkyonicwaalsasymmetrydependenceneutronconstraints
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We extend the recently developed quantum van der Waals quarkyonic matter to non-zero isospin asymmetries by utilizing the two-component van der Waals equation with a generalized excluded volume prescription. The isospin dependence of van der Waals interaction parameters is determined by constraints on the symmetry energy, slope of the symmetry energy, and nuclear ground state properties. We find that the speed of sound has a peak for all values of the asymmetry parameter, signifying a transition to quarkyonic matter. The quarkyonic matter onset density is found to have a mild dependence on isospin asymmetry, with specific details influenced by the isospin dependence of the repulsive interactions. We also incorporate leptonic degrees of freedom and explore the neutron star matter equation of state, calculating mass-radius relations and tidal properties of neutron stars. We find that quarkyonic matter supports heavy neutron stars with a maximum mass of at least 2.6 solar masses. We observe quantitatively different behavior for the excluded volume cases of isospin-blind ($b_{n}=b_{pn}$) and isospin-dependent ($b_{n} \neq b_{pn}$) repulsion, the latter being preferred by observational constraints.

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