Investigating Stable Quark Stars in Rastall-Rainbow Gravity and Their Compatibility with Gravitational Wave Observations

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Main Authors: Tangphati, Takol, Gogoi, Dhruba Jyoti, Pradhan, Anirudh, Banerjee, Ayan
Format: Preprint
Published: 2023
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_version_ 1866914703088812032
author Tangphati, Takol
Gogoi, Dhruba Jyoti
Pradhan, Anirudh
Banerjee, Ayan
author_facet Tangphati, Takol
Gogoi, Dhruba Jyoti
Pradhan, Anirudh
Banerjee, Ayan
contents We present a stable model for quark stars in Rastall-Rainbow (R-R) gravity. The structure of this configuration is obtained by utilizing an interacting quark matter equation of state. The R-R gravity theory is developed as a combination of two distinct theories, namely, the Rastall theory and the gravity's rainbow formalism. Depending on the model parameters ($\barλ, η, Σ$), the mass-radius relations are numerically computed for modified Tolman-Oppenheimer-Volkoff (TOV) equations with proper boundary conditions. The stability of equilibrium configuration has been checked through the static stability criterion, adiabatic index and the sound velocity. Our calculations predict larger maximum masses for quark stars, and the obtained results are compatible with accepted masses and radii values, including constraints from GW190814 and GW170817 events in all the studied cases.
format Preprint
id arxiv_https___arxiv_org_abs_2311_16869
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Investigating Stable Quark Stars in Rastall-Rainbow Gravity and Their Compatibility with Gravitational Wave Observations
Tangphati, Takol
Gogoi, Dhruba Jyoti
Pradhan, Anirudh
Banerjee, Ayan
General Relativity and Quantum Cosmology
We present a stable model for quark stars in Rastall-Rainbow (R-R) gravity. The structure of this configuration is obtained by utilizing an interacting quark matter equation of state. The R-R gravity theory is developed as a combination of two distinct theories, namely, the Rastall theory and the gravity's rainbow formalism. Depending on the model parameters ($\barλ, η, Σ$), the mass-radius relations are numerically computed for modified Tolman-Oppenheimer-Volkoff (TOV) equations with proper boundary conditions. The stability of equilibrium configuration has been checked through the static stability criterion, adiabatic index and the sound velocity. Our calculations predict larger maximum masses for quark stars, and the obtained results are compatible with accepted masses and radii values, including constraints from GW190814 and GW170817 events in all the studied cases.
title Investigating Stable Quark Stars in Rastall-Rainbow Gravity and Their Compatibility with Gravitational Wave Observations
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2311.16869