Generalization of the Randall-Sundrum Model Using Gravitational Model F(T,Θ)

In this letter, we explore a generalized model based on two scenarios including the Randall-Sundrum model and gravity model F(T,Θ). We first study the standard Randall-Sundrum gravitational model and then add a function containing two parameters as torsion and trace energy-momentum tensor to the mai...

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Main Authors: S. Davood Sadatian, S. M. Hosseini
Format: Article
Language:English
Published: Wiley 2018-01-01
Series:Advances in High Energy Physics
Online Access:http://dx.doi.org/10.1155/2018/2164764
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author S. Davood Sadatian
S. M. Hosseini
author_facet S. Davood Sadatian
S. M. Hosseini
author_sort S. Davood Sadatian
collection DOAJ
description In this letter, we explore a generalized model based on two scenarios including the Randall-Sundrum model and gravity model F(T,Θ). We first study the standard Randall-Sundrum gravitational model and then add a function containing two parameters as torsion and trace energy-momentum tensor to the main action of the model. Next, we derive the equations of the generalized model and obtain a new critical value for the energy density of the brane. The results showed that inflation and the dark energy-dominated stage can be realized in this model. We pointed out one significant category of dark energy models that had greatly developed the knowledge about dark energy. To be specific, dark energy could either be quintessence-like, phantom-like, or the so-called “quintom”-like. The models of quintom type suggest that the equation of state parameter of dark energy can cross the cosmological constant boundary ω=-1. Interestingly, this quintom scenario exactly appeared in this paper.
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issn 1687-7357
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spelling doaj-art-04c06f29af6a4377ab37452d703f512d2025-02-03T05:54:18ZengWileyAdvances in High Energy Physics1687-73571687-73652018-01-01201810.1155/2018/21647642164764Generalization of the Randall-Sundrum Model Using Gravitational Model F(T,Θ)S. Davood Sadatian0S. M. Hosseini1Department of Physics, Faculty of Basic Sciences, University of Neyshabur, P. O. Box 9318713331, Neyshabur, IranDepartment of Physics, Faculty of Basic Sciences, University of Neyshabur, P. O. Box 9318713331, Neyshabur, IranIn this letter, we explore a generalized model based on two scenarios including the Randall-Sundrum model and gravity model F(T,Θ). We first study the standard Randall-Sundrum gravitational model and then add a function containing two parameters as torsion and trace energy-momentum tensor to the main action of the model. Next, we derive the equations of the generalized model and obtain a new critical value for the energy density of the brane. The results showed that inflation and the dark energy-dominated stage can be realized in this model. We pointed out one significant category of dark energy models that had greatly developed the knowledge about dark energy. To be specific, dark energy could either be quintessence-like, phantom-like, or the so-called “quintom”-like. The models of quintom type suggest that the equation of state parameter of dark energy can cross the cosmological constant boundary ω=-1. Interestingly, this quintom scenario exactly appeared in this paper.http://dx.doi.org/10.1155/2018/2164764
spellingShingle S. Davood Sadatian
S. M. Hosseini
Generalization of the Randall-Sundrum Model Using Gravitational Model F(T,Θ)
Advances in High Energy Physics
title Generalization of the Randall-Sundrum Model Using Gravitational Model F(T,Θ)
title_full Generalization of the Randall-Sundrum Model Using Gravitational Model F(T,Θ)
title_fullStr Generalization of the Randall-Sundrum Model Using Gravitational Model F(T,Θ)
title_full_unstemmed Generalization of the Randall-Sundrum Model Using Gravitational Model F(T,Θ)
title_short Generalization of the Randall-Sundrum Model Using Gravitational Model F(T,Θ)
title_sort generalization of the randall sundrum model using gravitational model f t θ
url http://dx.doi.org/10.1155/2018/2164764
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