
TL;DR
This paper introduces a dynamical holographic QCD model that captures the renormalization group flow from UV to IR, providing insights into hadron spectra, phase transitions, and transport properties.
Contribution
It develops a novel dynamical holographic QCD model incorporating graviton, dilaton, and scalar fields to study non-perturbative QCD phenomena.
Findings
Accurate hadron spectra matching experimental data
Insights into QCD phase transition behavior
Quantitative estimates of transport coefficients
Abstract
We develop a dynamical holographic QCD model, which resembles the renormalization group from ultraviolet (UV) to infrared (IR). The dynamical holographic model is constructed in the graviton-dilaton-scalar framework with the dilaton background field and scalar field responsible for the gluodynamics and chiral dynamics, respectively. We summarize our results on hadron spectra, QCD phase transition and transport properties including the jet quenching parameter and the shear/bulk viscosity in the framework of the dynamical holographic QCD model.
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