Charged strange star in gravity with linear equation of state
arXiv:2105.12572 · doi:10.1007/s10509-021-03943-5
Abstract
Our present study involves the strange stars model in the framework of theory of gravitation. We have taken a linear function of the Ricci scalar and the trace of the stress-energy tensor for the expression of , i.e., to obtain the proposed model, where is a coupling constant. Moreover, to solve the hydrostatic equilibrium equations, we consider a linear equation of state between the radial pressure and matter density as , where and are some positive constants, Both depend on coupling constant which have been also depicted in this paper. By employing the Krori-Barua {\em ansatz} already reported in the literature [J. Phys. A, Math. Gen. 8:508, 1975] we have found the solutions of the field equations in gravity. The effect of coupling constant have been studied on the model parameters like density, pressures, anisotropic factor, compactness, surface redshift, etc. both numerically and graphically. A suitable range for is also obtained. The physical acceptability and stability of the stellar system have been tested by different physical tests, e.g., the causality condition, Herrera cracking concept, relativistic adiabatic index, energy conditions, etc. One can regain the solutions in Einstein gravity when
26 Pages, 10 Figures
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