Temperature Dependent Hadronic Bag and QGP Phase Transition in Dual QCD

Based on the magnetic symmetry structure of non-Abelian gauge theories, a dual QCD gauge theory has been constructed which takes into account the local structure as well as the topological features of the color gauge group into its dynamics in a completely dual-symmetric way. Using such dual version...

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Main Authors: G. .. Punetha, H. C. Chandola
Format: Article
Language:English
Published: L.N. Gumilyov Eurasian National University 2021-11-01
Series:Eurasian Journal of Physics and Functional Materials
Subjects:
Online Access:https://www.ephys.kz/jour/article/view/112
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author G. .. Punetha
H. C. Chandola
author_facet G. .. Punetha
H. C. Chandola
author_sort G. .. Punetha
collection DOAJ
description Based on the magnetic symmetry structure of non-Abelian gauge theories, a dual QCD gauge theory has been constructed which takes into account the local structure as well as the topological features of the color gauge group into its dynamics in a completely dual-symmetric way. Using such dual version of QCD in thermal domain following the partition function approach and the grand canonical ensemble formulation, the phase transition from hadron to QGP phase has been investigated within the framework of temperature dependent hadronic bag in the entire T - μ plane. The various thermodynamic properties like pressure, energy density, speed of sound and specific heat of the hadron/QGP phase have been evaluated and shown to lead an evidence for the first order phase transition. In the region around Tc < T < 4Tc , the specific heat and speed of sound are strongly influenced by the magnetically charged particles directly related to thermal monopoles evaporating from the magnetic condensate present at low temperature.
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spelling doaj.art-fe7a4cca1929482f8bd59fa7be1006332022-12-21T23:33:18ZengL.N. Gumilyov Eurasian National UniversityEurasian Journal of Physics and Functional Materials2522-98692616-85372021-11-0121687610.29317/ejpfm.2018020108111Temperature Dependent Hadronic Bag and QGP Phase Transition in Dual QCDG. .. Punetha0H. C. Chandola1Centre of Advanced Study DSB Campus Kumaun UniversityCentre of Advanced Study DSB Campus Kumaun UniversityBased on the magnetic symmetry structure of non-Abelian gauge theories, a dual QCD gauge theory has been constructed which takes into account the local structure as well as the topological features of the color gauge group into its dynamics in a completely dual-symmetric way. Using such dual version of QCD in thermal domain following the partition function approach and the grand canonical ensemble formulation, the phase transition from hadron to QGP phase has been investigated within the framework of temperature dependent hadronic bag in the entire T - μ plane. The various thermodynamic properties like pressure, energy density, speed of sound and specific heat of the hadron/QGP phase have been evaluated and shown to lead an evidence for the first order phase transition. In the region around Tc < T < 4Tc , the specific heat and speed of sound are strongly influenced by the magnetically charged particles directly related to thermal monopoles evaporating from the magnetic condensate present at low temperature.https://www.ephys.kz/jour/article/view/112dual qcdthermal bagphase transitionqgp
spellingShingle G. .. Punetha
H. C. Chandola
Temperature Dependent Hadronic Bag and QGP Phase Transition in Dual QCD
Eurasian Journal of Physics and Functional Materials
dual qcd
thermal bag
phase transition
qgp
title Temperature Dependent Hadronic Bag and QGP Phase Transition in Dual QCD
title_full Temperature Dependent Hadronic Bag and QGP Phase Transition in Dual QCD
title_fullStr Temperature Dependent Hadronic Bag and QGP Phase Transition in Dual QCD
title_full_unstemmed Temperature Dependent Hadronic Bag and QGP Phase Transition in Dual QCD
title_short Temperature Dependent Hadronic Bag and QGP Phase Transition in Dual QCD
title_sort temperature dependent hadronic bag and qgp phase transition in dual qcd
topic dual qcd
thermal bag
phase transition
qgp
url https://www.ephys.kz/jour/article/view/112
work_keys_str_mv AT gpunetha temperaturedependenthadronicbagandqgpphasetransitionindualqcd
AT hcchandola temperaturedependenthadronicbagandqgpphasetransitionindualqcd