4.6 Article

Effects of charge on gravitational decoupled anisotropic solutions in f(R) gravity

Journal

CHINESE JOURNAL OF PHYSICS
Volume 60, Issue -, Pages 426-439

Publisher

ELSEVIER
DOI: 10.1016/j.cjph.2019.05.016

Keywords

Gravitational decoupling; Exact solutions; f(R) gravity

Funding

  1. Higher Education Commission, Islamabad, Pakistan through the Indigenous Ph.D. 5000 Fellowship Program Phase-II, Batch-III [315-14455-2PS3-103(50034706)]

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This paper is devoted to studying charged anisotropic static spherically symmetric solutions through gravitationally decoupled minimal geometric deformation technique in f(R) gravity. For this purpose, we first consider the known isotropic Krori-Barua solution for f(R) Starobinsky model in the interior of a charged stellar system and then include the effects of two types of anisotropic solutions. The corresponding field equations are constructed and the unknown constants are obtained from junction conditions. We analyze the physical viability and stability of the resulting solutions through effective energy density, effective radial/tangential pressure, energy conditions, and causality condition. It is found that both solutions satisfy the stability range as well as other physical conditions for specific values of charge as well as model parameter and anisotropic constant. We conclude that the modified theory under the influence of charge yields more stable behavior of the self-gravitating system.

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