Transport properties and equation-of-state of hot and dense QGP matter near the critical end-point in the phenomenological dynamical quasi-particle model
Olga Soloveva, J\"org Aichelin, Elena Bratkovskaya

TL;DR
This paper extends the dynamical quasiparticle model to high baryon densities, incorporating a critical end-point and phase transition, to better describe the thermodynamics and transport properties of quark-gluon plasma near the QCD phase transition.
Contribution
The paper introduces the DQPM-CP, an extended model that captures the equation-of-state and transport properties of QGP at finite baryon chemical potential, including a critical end-point.
Findings
Reproduces lattice QCD equation-of-state in the crossover region.
Provides EoS and speed of sound for a range of temperatures and chemical potentials.
Shows phase diagram proximity to PNJL calculations.
Abstract
We extend the effective dynamical quasiparticle model (DQPM) - constructed for the description of non-perturbative QCD phenomena of the strongly interacting quark-gluon plasma (QGP) - to large baryon chemical potentials, , including a critical end-point and a 1st order phase transition. The DQPM description of quarks and gluons is based on partonic propagators with complex selfenergies where the real part of the selfenergies is related to the quasiparticle mass and the imaginary part to a finite width of their spectral functions. In DQPM the determination of complex selfenergies for the partonic degrees of freedom at zero and finite has been performed by adjusting the entropy density to the lQCD data. The temperature-dependent effective coupling (squared) , as well as the parton effective masses and widths are based on this adjustment. The novel extended…
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