Please use this identifier to cite or link to this item: https://www.um.edu.mt/library/oar/handle/123456789/121150
Title: Dynamical systems analysis in ƒ (T, ϕ) gravit
Authors: Duchaniya, Lokesh Kumar
Kadam, Siddheshwar A
Said, Jackson
Mishra, Bivudutta
Keywords: Gravitation -- Mathematical models
Dark energy (Astronomy)
Dynamics
Gravity
Cosmology -- Mathematical models
Issue Date: 2023
Publisher: Springer
Citation: Duchaniya, L. K., Kadam, S. A., Said, J. L., & Mishra, B. (2023). Dynamical systems analysis in ƒ (T, ϕ) gravity. The European Physical Journal C, 83(1), 27, 1-13.
Abstract: Teleparallel based cosmological models provide a description of gravity in which torsion is the mediator of gravitation. Several extensions have been made within the so-called teleparallel equivalent of general relativity which is equivalent to general relativity at the level of the equations of motion where attempts are made to study the extensions of this form of gravity and to describe more general functions of the torsion scalar T. One of these extensions is gravity; T and respectively denote the torsion scalar and scalar field. In this work, the dynamical system analysis has been performed for this class of theories to obtain the cosmological behaviour of a number of models. Two models are presented here with some functional form of the torsion scalar and the critical points are obtained. For each critical point, the stability behaviour and the corresponding cosmology are shown. Through the graphical representation, the equation of state parameter and the density parameters for matter-dominated, radiation-dominated and dark energy phase are also presented for both the models.
URI: https://www.um.edu.mt/library/oar/handle/123456789/121150
ISSN: 14346052
Appears in Collections:Scholarly Works - InsSSA

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