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Big Rip and Big Crunch Cosmological Models in a Gravitational Field with Torsion

M. A. Bakry, Aryn T. Shafeek

2021Gravitation and Cosmology17 citationsDOI

Abstract

Abstract The gravitational field with torsion is being constructed by using the parametrized absolute parallelism geometry. A generalized law of variation of Hubble’s parameter in evolutionary cosmological models is used. The cosmological models under the influence of the gravitational field with torsion are obtained and discussed. A new model of the Universe is presented using a special class of Riemann–Cartan geometry. This model is oscillating with expansion and contraction at different stages. It behaves normally as the conventional Big Bang model in the first half-age until it reaches the moment of a Big Rip, then reverses its behavior as a result of a changes in the pressure and torsion until it reaches a Big Crunch at the end of the second half-age. We suppose that the Big Rip singularity is replaced by a regular maximum of the scale factor at the Big Rip due to a possible physical mechanism of quantum nature. The positivity condition for the energy density of matter leads to exclusion of open and closed universes.

Topics & Concepts

PhysicsBig CrunchBig BounceBig RipTorsion (gastropod)SingularityGravitationGravitational fieldTheoretical physicsHubble's lawInitial singularityClassical mechanicsDe Sitter universeUniverseMetric expansion of spaceDark energyCosmologyAstrophysicsGeometryPhysical cosmologyMathematicsSteady State theoryMedicineSurgeryCosmology and Gravitation TheoriesRelativity and Gravitational TheoryBlack Holes and Theoretical Physics
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