Please use this identifier to cite or link to this item: https://www.um.edu.mt/library/oar/handle/123456789/89389
Title: Geodesic congruences and a collapsing stellar distribution in f (T) theories
Authors: Chakrabarti, Soumya
Said, Jackson
Keywords: Geodetic astronomy
Stellar dynamics
Scalar field theory
General relativity (Physics)
Riemannian manifolds
Ricci flow
Issue Date: 2020
Publisher: American Physical Society
Citation: Chakrabarti, S., & Said, J. L. (2020). Geodesic congruences and a collapsing stellar distribution in f (T) theories. Physical Review D, 101(12), 124044.
Abstract: Teleparallel gravity (TG) describes gravitation as a torsional- rather than curvature-based effect. As in curvature-based constructions of gravity, several different formulations can be proposed, one of which is the teleparallel equivalent of general relativity (TEGR) which is dynamically equivalent to GR. In this work, we explore the evolution of a spatially homogeneous collapsing stellar body in the context of two important modifications to TEGR, namely f (T ) gravity, which is the TG analog of f (R ) gravity, and a nonminimal coupling with a scalar field which has become popular in TG for its effects in cosmology. We explore the role of geodesic deviation to study the congruence of nearby particles in lieu of the Raychaudhuri equation. We find f (T ) models that satisfy the null energy condition and describe interesting collapse profiles. In the case of a nonminimally coupled scalar field, we also find potential collapse models with intriguing scalar field evolution profiles.
URI: https://www.um.edu.mt/library/oar/handle/123456789/89389
Appears in Collections:Scholarly Works - InsSSA

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