Modified Gravity Model fQ,T and Wormhole Solution

We investigate wormhole solutions using the modified gravity model fQ,T with viscosity and aim to find a solution for the existence of wormholes mathematically without violating the energy conditions. We show that there is no need to define a wormhole from exotic matter and analyze the equations wit...

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Main Authors: S. Davood Sadatian, S. Mohamad Reza Hosseini
Format: Article
Language:English
Published: Wiley 2024-01-01
Series:Advances in High Energy Physics
Online Access:http://dx.doi.org/10.1155/2024/3717418
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author S. Davood Sadatian
S. Mohamad Reza Hosseini
author_facet S. Davood Sadatian
S. Mohamad Reza Hosseini
author_sort S. Davood Sadatian
collection DOAJ
description We investigate wormhole solutions using the modified gravity model fQ,T with viscosity and aim to find a solution for the existence of wormholes mathematically without violating the energy conditions. We show that there is no need to define a wormhole from exotic matter and analyze the equations with numerical analysis to establish weak energy conditions. In the numerical analysis, we found that the appropriate values of the parameters can maintain the weak energy conditions without the need for exotic matter. Adjusting the parameters of the model can increase or decrease the rate of positive energy density or radial and tangential pressures. According to the numerical analysis conducted in this paper, the weak energy conditions are established in the whole space if α<0 and 12.56<β<25.12 or α>0 and β>25.12. The analysis also showed that the supporting matter of the wormhole is near normal matter, indicating that the generalized fQ,T model with viscosity has an acceptable parameter space to describe a wormhole without the need for exotic matter.
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spelling doaj-art-2e5eee78c376463daee343843d7e4a8f2025-08-20T03:55:07ZengWileyAdvances in High Energy Physics1687-73652024-01-01202410.1155/2024/3717418Modified Gravity Model fQ,T and Wormhole SolutionS. Davood Sadatian0S. Mohamad Reza Hosseini1Department of PhysicsDepartment of PhysicsWe investigate wormhole solutions using the modified gravity model fQ,T with viscosity and aim to find a solution for the existence of wormholes mathematically without violating the energy conditions. We show that there is no need to define a wormhole from exotic matter and analyze the equations with numerical analysis to establish weak energy conditions. In the numerical analysis, we found that the appropriate values of the parameters can maintain the weak energy conditions without the need for exotic matter. Adjusting the parameters of the model can increase or decrease the rate of positive energy density or radial and tangential pressures. According to the numerical analysis conducted in this paper, the weak energy conditions are established in the whole space if α<0 and 12.56<β<25.12 or α>0 and β>25.12. The analysis also showed that the supporting matter of the wormhole is near normal matter, indicating that the generalized fQ,T model with viscosity has an acceptable parameter space to describe a wormhole without the need for exotic matter.http://dx.doi.org/10.1155/2024/3717418
spellingShingle S. Davood Sadatian
S. Mohamad Reza Hosseini
Modified Gravity Model fQ,T and Wormhole Solution
Advances in High Energy Physics
title Modified Gravity Model fQ,T and Wormhole Solution
title_full Modified Gravity Model fQ,T and Wormhole Solution
title_fullStr Modified Gravity Model fQ,T and Wormhole Solution
title_full_unstemmed Modified Gravity Model fQ,T and Wormhole Solution
title_short Modified Gravity Model fQ,T and Wormhole Solution
title_sort modified gravity model fq t and wormhole solution
url http://dx.doi.org/10.1155/2024/3717418
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