Thermodynamics and energy loss in D dimensions from holographic QCD model
Abstract
We consider the holographic QCD model with a planar horizon in the D dimensions with different consistent metric solutions. We investigate the black hole thermodynamics, phase diagram and equations of state (EoS) in different dimensions. The temperature and chemical potential dependence of the drag force and diffusion coefficient also have been studied. From the results, the energy loss of heavy quark shows an enhancement near the phase transition temperature in D dimensions. This finding illustrates that the energy loss of heavy quark has a nontrivial and non-monotonic dependence on temperature. Furthermore, we find the heavy quark may lose less energy in higher dimension. The diffusion coefficient is larger in higher dimension.
Keywords
Cite
@article{arxiv.2109.02366,
title = {Thermodynamics and energy loss in D dimensions from holographic QCD model},
author = {Zhou-Run Zhu and Jun-Xia Chen and Xian-Ming Liu and Defu Hou},
journal= {arXiv preprint arXiv:2109.02366},
year = {2022}
}
Comments
31 pages, 17 figures, version accepted for publication in European Physical Journal C