To better understand the dynamics of the quark-hadron phase transition at non-vanishing bario-chemical potential, the temperature response of the non-perturbative QCD vacuum has been investigated in the context of the SU(2) dual version of colour gauge theory. Quark-hadron phase transition state has been developed within the framework of dual QCD based hadronic bag, which secures the critical parameters and their associated critical points. It is demonstrated via a 3D depiction of the pressure, energy, and entropy density profiles in the T- \(\mu \) plane, which offers strong support for the first order phase transition occurring at finite chemical potential.

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Hadronic Bag and QCD Phase Transition at Finite Temperature and Chemical Potential

  • Garima Punetha

摘要

To better understand the dynamics of the quark-hadron phase transition at non-vanishing bario-chemical potential, the temperature response of the non-perturbative QCD vacuum has been investigated in the context of the SU(2) dual version of colour gauge theory. Quark-hadron phase transition state has been developed within the framework of dual QCD based hadronic bag, which secures the critical parameters and their associated critical points. It is demonstrated via a 3D depiction of the pressure, energy, and entropy density profiles in the T- \(\mu \) plane, which offers strong support for the first order phase transition occurring at finite chemical potential.