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Covariant density and velocity perturbations of the quasi-Newtonian cosmological model in $f(T)$ gravity

We investigate classes of shear-free cosmological dust models with irrotational fluid flows within the framework of $f(T)$ gravity. In particular, we use the $1 + 3$ covariant formalism and present the covariant linearised evolution and constraint equations describing such models. We then derive the...

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Detalles Bibliográficos
Autores principales: Sami, Heba, Sahlu, Shambel, Abebe, Amare, Dunsby, Peter K.S.
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:http://cds.cern.ch/record/2765912
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author Sami, Heba
Sahlu, Shambel
Abebe, Amare
Dunsby, Peter K.S.
author_facet Sami, Heba
Sahlu, Shambel
Abebe, Amare
Dunsby, Peter K.S.
author_sort Sami, Heba
collection CERN
description We investigate classes of shear-free cosmological dust models with irrotational fluid flows within the framework of $f(T)$ gravity. In particular, we use the $1 + 3$ covariant formalism and present the covariant linearised evolution and constraint equations describing such models. We then derive the integrability conditions describing a consistent evolution of the linearised field equations of these quasi-Newtonian universes in the $f(T)$ gravitational theory. Finally, we derive the evolution equations for the density and velocity perturbations of the quasi-Newtonian universe. We explore the behaviour of the matter density contrast for two models - $f(T)= \mu T_{0}(T/T_{0})^{n}$ and the more generalised case, where $f(T)= T+ \mu T_{0} (T/T_{0})^{n}$, with and without the application of the quasi-static approximation. Our numerical solutions show that these $f(T)$ theories can be suitable alternatives to study the background dynamics, whereas the growth of energy density fluctuations change dramatically from the expected $\Lambda$CDM behaviour even for small deviations away from the general relativistic limits of the underlying $f(T)$ theory. Moreover, applying the so-called quasi-static approximation yields exact-solution results that are orders of magnitude different from the numerically integrated solutions of the full system, suggesting that these approximations are not applicable here.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
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spelling cern-27659122021-05-07T03:07:29Zhttp://cds.cern.ch/record/2765912engSami, HebaSahlu, ShambelAbebe, AmareDunsby, Peter K.S.Covariant density and velocity perturbations of the quasi-Newtonian cosmological model in $f(T)$ gravitygr-qcGeneral Relativity and CosmologyWe investigate classes of shear-free cosmological dust models with irrotational fluid flows within the framework of $f(T)$ gravity. In particular, we use the $1 + 3$ covariant formalism and present the covariant linearised evolution and constraint equations describing such models. We then derive the integrability conditions describing a consistent evolution of the linearised field equations of these quasi-Newtonian universes in the $f(T)$ gravitational theory. Finally, we derive the evolution equations for the density and velocity perturbations of the quasi-Newtonian universe. We explore the behaviour of the matter density contrast for two models - $f(T)= \mu T_{0}(T/T_{0})^{n}$ and the more generalised case, where $f(T)= T+ \mu T_{0} (T/T_{0})^{n}$, with and without the application of the quasi-static approximation. Our numerical solutions show that these $f(T)$ theories can be suitable alternatives to study the background dynamics, whereas the growth of energy density fluctuations change dramatically from the expected $\Lambda$CDM behaviour even for small deviations away from the general relativistic limits of the underlying $f(T)$ theory. Moreover, applying the so-called quasi-static approximation yields exact-solution results that are orders of magnitude different from the numerically integrated solutions of the full system, suggesting that these approximations are not applicable here.arXiv:2105.00646oai:cds.cern.ch:27659122021-05-03
spellingShingle gr-qc
General Relativity and Cosmology
Sami, Heba
Sahlu, Shambel
Abebe, Amare
Dunsby, Peter K.S.
Covariant density and velocity perturbations of the quasi-Newtonian cosmological model in $f(T)$ gravity
title Covariant density and velocity perturbations of the quasi-Newtonian cosmological model in $f(T)$ gravity
title_full Covariant density and velocity perturbations of the quasi-Newtonian cosmological model in $f(T)$ gravity
title_fullStr Covariant density and velocity perturbations of the quasi-Newtonian cosmological model in $f(T)$ gravity
title_full_unstemmed Covariant density and velocity perturbations of the quasi-Newtonian cosmological model in $f(T)$ gravity
title_short Covariant density and velocity perturbations of the quasi-Newtonian cosmological model in $f(T)$ gravity
title_sort covariant density and velocity perturbations of the quasi-newtonian cosmological model in $f(t)$ gravity
topic gr-qc
General Relativity and Cosmology
url http://cds.cern.ch/record/2765912
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AT sahlushambel covariantdensityandvelocityperturbationsofthequasinewtoniancosmologicalmodelinftgravity
AT abebeamare covariantdensityandvelocityperturbationsofthequasinewtoniancosmologicalmodelinftgravity
AT dunsbypeterks covariantdensityandvelocityperturbationsofthequasinewtoniancosmologicalmodelinftgravity