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Stability analysis of anisotropic Bianchi type-I cosmological model in teleparallel gravity

M. KoussourQuantum Physics and Magnetism Team, LPMC, Faculty of Science Ben M’sik, Casablanca Hassan II University, MoroccoМ. БеннаиLab of High Energy Physics, Modeling and Simulations, Faculty of Science, University Mohammed V-Agdal, Rabat, Morocco
2022en
ABI

Аннотация

Abstract In this work, we study a cosmological model of Bianchi type-I Universe in teleparallel gravity for a perfect fluid. To obtain the cosmological solution of the model, we assume that the deceleration parameter (DP) is a linear function of the Hubble parameter H i.e. q = −1 + βH (where β as a positive constant). Consequently, we get a model of our Universe, where it goes from the initial phase of deceleration to the current phase of acceleration. We have discussed some physical and geometric properties such as Hubble parameter, DP, energy density, pressure, and equation of state parameter and study their behavior graphically in terms of redshift and compare it with observational data such as Type Ia supernovae. We also discussed the behavior of other parameters such as the jerk parameter, statefinder parameters and we tested the validity of the model by studying the stability analysis and energy conditions.

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Цитирований: 6Использованных источников: 0