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Effects of anisotropic pressure on interacting quark star structure

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arxiv 2311.18770 v2 pith:XHGPAZ5D submitted 2023-11-30 gr-qc astro-ph.SRnucl-th

classification gr-qcastro-ph.SRnucl-th
keywords interactingquarkanisotropiceffectsstarsanisotropiesanisotropypressure
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Perturbative Quantum Chromodynamics (pQCD) corrections and color superconductivity predict that strongly interacting matter can reveal new physical phenomena under extreme conditions. Taking into account these interaction effects, we investigate the role of anisotropic pressure in quark stars composed of interacting quark matter. Adopting two physically well-motivated anisotropy profiles, we numerically solve the stellar structure equations in order to explore the consequences of anisotropic pressure on various macroscopic properties such as radius, gravitational mass, surface redshift, moment of inertia, tidal Love number and oscillation spectrum. Remarkably, for both anisotropy models, negative anisotropies increase the radial stability of interacting quark stars, while the opposite occurs for positive anisotropies. However, for the Bowers-Liang profile, the central density corresponding to the maximum-mass point does not coincide with the central density where the squared oscillation frequency vanishes, indicating that the existence of stable anisotropic interacting quark stars is possible beyond the maximum mass for negative anisotropies. Additionally, we compare our theoretical predictions with several observational mass-radius measurements and tidal deformability constraints, which suggest that both strong interaction effects and anisotropy effects play a crucial role in describing compact stars observed in the Universe.

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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. Interacting quark matter and $f(Q)$ gravity: A new paradigm in exploring the properties of quark stars

    gr-qc 2024-12 reject novelty 3.0 of 10

    Exact quark star solutions in linear f(Q) gravity with an interacting quark matter equation of state yield 1.8 to 2.1 solar mass stars, but the f(Q) setup is equivalent to general relativity and the observed-radius ma...

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