Please use this identifier to cite or link to this item: https://www.um.edu.mt/library/oar/handle/123456789/89390
Title: Cosmological bouncing solutions in f (T, B) gravity
Authors: Caruana, Maria
Farrugia, Gabriel
Said, Jackson
Keywords: Gravity -- Mathematical models
Field theory (Physics)
Lagrange equations
Ricci flow
General relativity (Physics)
Cosmology
Issue Date: 2020
Publisher: Springer
Citation: Caruana, M., Farrugia, G., & Levi Said, J. (2020). Cosmological bouncing solutions in f (T, B) gravity. The European Physical Journal C, 80(7), 1-20.
Abstract: Teleparallel Gravity offers the possibility of reformulating gravity in terms of torsion by exchanging the Levi-Civita connection with the Weitzenböck connection which describes torsion rather than curvature. Surprisingly, Teleparallel Gravity can be formulated to be equivalent to general relativity for a appropriate setup. Our interest lies in exploring an extension of this theory inwhich the Lagrangian takes the form of f (T, B) where T and B are two scalars that characterize the equivalency with general relativity. In this work, we explore the possible of reproducing well-known cosmological bouncing scenarios in the flat Friedmann– Lemaître–Robertson–Walker geometry using this approach to gravity. We study the types of gravitational Lagrangians which are capable of reconstructing analytical solutions for symmetric, oscillatory, superbounce, matter bounce, and singular bounce settings. These new cosmologically inspired models may have an effect on gravitational phenomena at other cosmological scales.
URI: https://www.um.edu.mt/library/oar/handle/123456789/89390
Appears in Collections:Scholarly Works - InsSSA

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