Thermodynamics of PNJL at zero temperature in a strong magnetic field
Abstract
In this paper, the deconfinement and chiral restoration transitions in strong magnetic field is realized at zero temperature in the Polyakov NambuJona-Lasinio model. We provide the thermodynamic treatment to mimic the deconfinement phase transition at zero temperature together with the entangled scalar and vector interactions coupled with the Polyakov loop. The magnetic catalysis is found by a rising behavior of the critical chemical potential for the first-order deconfinement phase transition. While the magnetic catalysis on the chiral restoration could convert to inverse magnetic catalysis under the running coupling interaction ansatz. Furthermore, the stronger magnetic field makes the possible quarkyonic phase window to be enlarged under the running coupling interaction.
Keywords
Cite
@article{arxiv.2204.06135,
title = {Thermodynamics of PNJL at zero temperature in a strong magnetic field},
author = {Yuan Wang and Xin-Jian Wen},
journal= {arXiv preprint arXiv:2204.06135},
year = {2022}
}
Comments
11 pages, 7 figures