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Quarkyonic stars with isospin-flavor asymmetry

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arxiv 2103.10209 v1 pith:T5I353X2 submitted 2021-03-18 nucl-th astro-ph.HEhep-ph

classification nucl-thastro-ph.HEhep-ph
keywords quarkyonicstarsmattermodelnucleonasymmetricasymmetrybeta
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abstract

We suggest an extension to isospin asymmetric matter of the quarkyonic model from McLerran and Reddy. This extension allows us to construct the $\beta$-equilibrium between quarks, nucleons and leptons. The concept of the quarkyonic matter originates from the large number of color limit for which nucleons are the correct degrees of freedom near the Fermi surface -- reflecting the confining forces -- while deep inside the Fermi sea quarks naturally appear. In isospin asymmetric matter, we suggest that this new concept can be implemented within a global isoscalar relation between the shell gaps differentiating the nucleon and the quark sectors. In addition, we impose the conservation of the isospin-flavor asymmetry in the nucleon and the quark phases. Within this model, several quarkyonic stars are constructed on top of the SLy4 model for the nucleon sector, producing a bump in the sound speed, which implies that quarkyonic stars are systematically bigger and have a larger maximum mass than the associated neutron stars. They also predict lower proton fraction at $\beta$-equilibrium, which potentially quenches fast cooling in massive compact stars.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. In-medium hyperon potentials and the quarkyonic hyperon onset: charged $\Sigma$'s in $\beta$-equilibrium and the neutrino connection

    nucl-th 2026-07 conditional novelty 6.5 of 10

    In-medium potentials give the quarkyonic hyperon onset weight-2 leverage on U_Y, ban Σ⁻ in β-equilibrium, keep TOV softening ≲0.025 M_⊙, and leave core strangeness prior-dominated once neutrino FSI pin U_Λ(n0).

  2. Quarkyonic Stars with Strangeness

    nucl-th 2026-07 conditional novelty 6.0 of 10

    A three-flavor quarkyonic model with octet baryons yields stiffer neutron-star EOS and raises maximum masses, potentially resolving the hyperon puzzle.

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

    nucl-th 2024-11 conditional novelty 6.0 of 10

    The authors generalize the quantum van der Waals quarkyonic matter model to asymmetric nuclear matter and find neutron star masses up to about 2.6 solar masses, with isospin-dependent repulsion preferred by observations.

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