Dynamical system analysis in multiscalar-torsion cosmology

We explore the phase-space of a multiscalar-torsion gravitational theory within a cosmological framework characterized by a spatially flat Friedmann–Lemaître–Robertson–Walker model. Our investigation focuses on teleparallelism and involves a gravitational model featuring two scalar fields, where one...

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Veröffentlicht in:PHYSICS OF THE DARK UNIVERSE 2024-05, Vol.44, p.101459, Article 101459
Hauptverfasser: Leon, Genly, Paliathanasis, Andronikos, Millano, Alfredo D.
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Sprache:eng
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Zusammenfassung:We explore the phase-space of a multiscalar-torsion gravitational theory within a cosmological framework characterized by a spatially flat Friedmann–Lemaître–Robertson–Walker model. Our investigation focuses on teleparallelism and involves a gravitational model featuring two scalar fields, where one scalar field is coupled to the torsion scalar. We consider coupling in the two scalar fields’ kinetic and potential components. We employ exponential functions for the scalar field potentials and analyse the field equations’ equilibrium points to reconstruct the cosmological evolution. Remarkably, we discover many equilibrium points in this multiscalar field model, capable of describing various eras of cosmological evolution. Hence, this model can be used to describe the early and late time acceleration phases of the universe and as a unification model for the elements of the dark sector of the universe.
ISSN:2212-6864
2212-6864
DOI:10.1016/j.dark.2024.101459