The (De)confinement Transition in Tachyonic Matter at Finite Temperature

We present a QCD motivated model that mimics QCD theory. We examine the characteristics of the gauge field coupled with the color dielectric function (G) in the presence of temperature (T). The aim is to achieve confinement at low temperatures T<Tc, (Tc is the critical temperature), similar to wh...

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Main Authors: Adamu Issifu, Francisco A. Brito
Format: Article
Language:English
Published: Wiley 2019-01-01
Series:Advances in High Energy Physics
Online Access:http://dx.doi.org/10.1155/2019/9450367
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author Adamu Issifu
Francisco A. Brito
author_facet Adamu Issifu
Francisco A. Brito
author_sort Adamu Issifu
collection DOAJ
description We present a QCD motivated model that mimics QCD theory. We examine the characteristics of the gauge field coupled with the color dielectric function (G) in the presence of temperature (T). The aim is to achieve confinement at low temperatures T<Tc, (Tc is the critical temperature), similar to what occurs among quarks and gluons in hadrons at low energies. Also, we investigate scalar glueballs and QCD string tension and effect of temperature on them. To achieve this, we use the phenomenon of color dielectric function in gauge fields in a slowly varying tachyon medium. This method is suitable for analytically computing the resulting potential, glueball masses, and the string tension associated with the confinement at a finite temperature. We demonstrate that the color dielectric function changes Maxwell’s equation as a function of the tachyon fields and induces the electric field in a way that brings about confinement during the tachyon condensation below the critical temperature.
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publishDate 2019-01-01
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series Advances in High Energy Physics
spelling doaj-art-36cf058026864940b450c41c03c540b52025-02-03T06:01:19ZengWileyAdvances in High Energy Physics1687-73571687-73652019-01-01201910.1155/2019/94503679450367The (De)confinement Transition in Tachyonic Matter at Finite TemperatureAdamu Issifu0Francisco A. Brito1Departamento de Física, Universidade Federal de Campina Grande, Caixa Postal 10071, 58429-900 Campina Grande, Paraíba, BrazilDepartamento de Física, Universidade Federal de Campina Grande, Caixa Postal 10071, 58429-900 Campina Grande, Paraíba, BrazilWe present a QCD motivated model that mimics QCD theory. We examine the characteristics of the gauge field coupled with the color dielectric function (G) in the presence of temperature (T). The aim is to achieve confinement at low temperatures T<Tc, (Tc is the critical temperature), similar to what occurs among quarks and gluons in hadrons at low energies. Also, we investigate scalar glueballs and QCD string tension and effect of temperature on them. To achieve this, we use the phenomenon of color dielectric function in gauge fields in a slowly varying tachyon medium. This method is suitable for analytically computing the resulting potential, glueball masses, and the string tension associated with the confinement at a finite temperature. We demonstrate that the color dielectric function changes Maxwell’s equation as a function of the tachyon fields and induces the electric field in a way that brings about confinement during the tachyon condensation below the critical temperature.http://dx.doi.org/10.1155/2019/9450367
spellingShingle Adamu Issifu
Francisco A. Brito
The (De)confinement Transition in Tachyonic Matter at Finite Temperature
Advances in High Energy Physics
title The (De)confinement Transition in Tachyonic Matter at Finite Temperature
title_full The (De)confinement Transition in Tachyonic Matter at Finite Temperature
title_fullStr The (De)confinement Transition in Tachyonic Matter at Finite Temperature
title_full_unstemmed The (De)confinement Transition in Tachyonic Matter at Finite Temperature
title_short The (De)confinement Transition in Tachyonic Matter at Finite Temperature
title_sort de confinement transition in tachyonic matter at finite temperature
url http://dx.doi.org/10.1155/2019/9450367
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