Buchdahl quark stars within theory
arXiv:2209.11590 · doi:10.1140/epjp/s13360-022-03273-7
Abstract
In the present paper, authors study the strange stars with the MIT Bag EoS admitting Buchdahl symmetry (non-singular and physically viable metric potential) in the both linear and non-linear forms of modified symmetric teleparallel gravitation. In order to obtain the correct form of Buchdahl metric coefficients, they matched interior strange star spacetime with the exterior Schwarzschild vacuum spacetime. As a strange star candidate, PSRJ1416-2230 has been used with mass and radius . For either linear and non-linear gravities, they probed Null, Dominant and Strong Energy Conditions as well as the radial, tangential Equation of State (EoS), gradients of the perfect fluid energy-momentum tensor elements, Tolman-Oppenheimer-Volkoff equilibrium condition, relativistic adiabatic index and causality conditions, surface redshift. It was found that strange stars in the linear and non-linear gravity show physically viable behavior, respect energy and causality conditions, has EoS in the bounds and surface redshift does not exceed 2, as expected.
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References in corpus (6)
- Starting the Universe: Stable Violation of the Null Energy Condition and Non-standard Cosmologies
- Spherically symmetric configuration in gravity
- Energy conditions bounds on f(T) gravity
- Supernova SN2006gy as a first ever Quark Nova?
- f(R) gravity: successes and challenges
- A study of anisotropic spheres in gravity with quintessence field