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Quark stars with a unified interacting equation of state in regularized 4D Einstein-Gauss-Bonnet gravity

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arxiv 2309.00703 v4 pith:Q5CXHTQN submitted 2023-09-01 gr-qc astro-ph.HE

classification gr-qcastro-ph.HE
keywords quarkstarsgeneraldegbfindgravitypressuretheory
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abstract

Since the derivation of a well-defined $D\rightarrow 4$ limit for 4D Einstein Gauss-Bonnet (4DEGB) gravity coupled to a scalar field, there has been interest in testing it as an alternative to Einstein's general theory of relativity. Using the Tolman-Oppenheimer-Volkoff (TOV) equations modified for 4DEGB gravity, we model the stellar structure of quark stars using a novel interacting quark matter equation of state. We find that increasing the Gauss-Bonnet coupling constant $\alpha$ or the interaction parameter $\lambda$ both tend to increase the mass-radius profiles of quark stars described by this theory, allowing a given central pressure to support larger quark stars in general. These results logically extend to cases where $\lambda < 0$, in which increasing the magnitude of the interaction effects instead diminishes masses and radii. We also analytically identify a critical central pressure in both regimes, below which no quark star solutions exist due to the pressure function having no roots. Most interestingly, we find that quark stars can exist below the general relativistic Buchdahl bound and Schwarzschild radius $R=2M$, due to the lack of a mass gap between black holes and compact stars in 4DEGB. Even for small $\alpha$ well within current observational constraints, we find that quark star solutions in this theory can describe Extreme Compact Objects (ECOs), objects whose radii are smaller than what is allowed by general relativity.

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Cited by 2 Pith papers

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

  1. Bayesian constraints on quark stars from multi-messenger observations

    astro-ph.HE 2025-06 conditional novelty 5.0 of 10

    A Bayesian analysis shows quark star models with an interacting MIT bag EOS naturally fit the low-mass object HESS J1731-347, but support for a roughly 2.6 solar mass quark star in GW190814 depends on the chosen priors.

  2. Impact of hyperons on structural properties of neutron stars and hybrid stars within the regularized four-dimensional Einstein-Gauss-Bonnet gravity

    nucl-th 2024-12 conditional novelty 5.0 of 10

    In regularized 4D Einstein-Gauss-Bonnet gravity, positive values of the Gauss-Bonnet coupling increase neutron star and hybrid star maximum masses, while negative values lower them, allowing astrophysical mass and rad...

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