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Structure scalars of spherically symmetric dissipative fluids with \(f(G,T)\) gravity

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Abstract

The aim of this study is to analyze the role of modification of gravity on some dynamical properties of spherically symmetric relativistic systems. In this settings, the mathematical modeling of scalar variables associated with the shearing viscous dissipative anisotropic spherical stars is explored. We assume that the non-static diagonally symmetric spherical structure is coupled with a relativistic matter content in the presence of \(f(G,T)=\alpha G^{n}+\beta \ln [G]+\lambda T\) gravity. After using Misner–Sharp mass function, we have made correspondence between metric scale factors, tidal forces and structure parameters. We have adopted Herrera’s technique for the orthogonally breaking down of the Riemann tensor, in order to formulate modified forms of structure scalars. The role of these invariants is then explored in the evolutionary properties of radiating spheres. The parameters responsible for the outbreak of inhomogeneities are being examined in the presence and absence of constant \(f(G,T)\) terms. It is inferred that the evolutionary phases of the spherical interiors can be well studied via extended versions of scalar variables.

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Correspondence to Z. Yousaf.

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Yousaf, Z. Structure scalars of spherically symmetric dissipative fluids with \(f(G,T)\) gravity. Astrophys Space Sci 363, 226 (2018). https://doi.org/10.1007/s10509-018-3450-7

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  • DOI: https://doi.org/10.1007/s10509-018-3450-7

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