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Hadron-quark phase transition in the neutron star with vector MIT bag model and Korea-IBS-Daegu-SKKU functional

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arxiv 2402.18912 v2 pith:HEQDLCLQ submitted 2024-02-29 nucl-th hep-ph

classification nucl-thhep-ph
keywords phasetransitionhybridmodelpropertiesstarstarsvector
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

Employing the Korea-IBS-Daegu-SKKU (KIDS) density functional for the hadron phase and the MIT bag model with vector (vBag) model for the quark phase, we obtain hadron-quark phase transition in neutron stars considering Maxwell construction. The structural properties of the resultant hybrid stars are computed for three different values of bag constant ($B$) in the range $B^{1/4}=$(145$-$160 MeV). We study the effects of symmetry energy ($J$) on the hybrid star properties with the different KIDS model and found that $J$ has important influence not only on the transition properties like the transition mass, transition radius and jump in density due to phase transition, but also on the stability of the hybrid stars. The vector repulsion of the quark phase via the parameter $G_V$ has profound influence in obtaining reasonable hybrid star configurations, consistent with the recent astrophysical constraints on the structural properties of compact stars. Within the aforesaid range of $B$, the value of $G_V$ is constrained to be 0.3 $\lesssim G_V \lesssim$ 0.4 in order to obtain reasonable hybrid star configurations.

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  1. Properties of interacting quark star in light of Rastall gravity

    gr-qc 2024-12 reject novelty 4.0 of 10

    Interacting quark stars in Rastall gravity reach maximum masses of 2.04 to 2.81 solar masses, exceeding general-relativistic limits and matching heavy pulsars and GW190814.

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