Lorentz Distributed Noncommutative F(T,TG) Wormhole Solutions

The aim of this paper is to study static spherically symmetric noncommutative F(T,TG) wormhole solutions along with Lorentzian distribution. Here, T and TG are torsion scalar and teleparallel equivalent Gauss-Bonnet term, respectively. We take a particular redshift function and two F(T,TG) models. W...

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Main Authors: M. Sharif, Kanwal Nazir
Format: Article
Language:English
Published: Wiley 2018-01-01
Series:Advances in High Energy Physics
Online Access:http://dx.doi.org/10.1155/2018/7517634
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author M. Sharif
Kanwal Nazir
author_facet M. Sharif
Kanwal Nazir
author_sort M. Sharif
collection DOAJ
description The aim of this paper is to study static spherically symmetric noncommutative F(T,TG) wormhole solutions along with Lorentzian distribution. Here, T and TG are torsion scalar and teleparallel equivalent Gauss-Bonnet term, respectively. We take a particular redshift function and two F(T,TG) models. We analyze the behavior of shape function and also examine null as well as weak energy conditions graphically. It is concluded that there exist realistic wormhole solutions for both models. We also studied the stability of these wormhole solutions through equilibrium condition and found them stable.
format Article
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institution Kabale University
issn 1687-7357
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publishDate 2018-01-01
publisher Wiley
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series Advances in High Energy Physics
spelling doaj-art-04fecf278a824b6aa83f45e47e198fc62025-02-03T01:25:52ZengWileyAdvances in High Energy Physics1687-73571687-73652018-01-01201810.1155/2018/75176347517634Lorentz Distributed Noncommutative F(T,TG) Wormhole SolutionsM. Sharif0Kanwal Nazir1Department of Mathematics, University of the Punjab, Quaid-e-Azam Campus, Lahore 54590, PakistanDepartment of Mathematics, University of the Punjab, Quaid-e-Azam Campus, Lahore 54590, PakistanThe aim of this paper is to study static spherically symmetric noncommutative F(T,TG) wormhole solutions along with Lorentzian distribution. Here, T and TG are torsion scalar and teleparallel equivalent Gauss-Bonnet term, respectively. We take a particular redshift function and two F(T,TG) models. We analyze the behavior of shape function and also examine null as well as weak energy conditions graphically. It is concluded that there exist realistic wormhole solutions for both models. We also studied the stability of these wormhole solutions through equilibrium condition and found them stable.http://dx.doi.org/10.1155/2018/7517634
spellingShingle M. Sharif
Kanwal Nazir
Lorentz Distributed Noncommutative F(T,TG) Wormhole Solutions
Advances in High Energy Physics
title Lorentz Distributed Noncommutative F(T,TG) Wormhole Solutions
title_full Lorentz Distributed Noncommutative F(T,TG) Wormhole Solutions
title_fullStr Lorentz Distributed Noncommutative F(T,TG) Wormhole Solutions
title_full_unstemmed Lorentz Distributed Noncommutative F(T,TG) Wormhole Solutions
title_short Lorentz Distributed Noncommutative F(T,TG) Wormhole Solutions
title_sort lorentz distributed noncommutative f t tg wormhole solutions
url http://dx.doi.org/10.1155/2018/7517634
work_keys_str_mv AT msharif lorentzdistributednoncommutativefttgwormholesolutions
AT kanwalnazir lorentzdistributednoncommutativefttgwormholesolutions