QCD phase structure under rotation
Hao-Lei Chen, Xu-Guang Huang, Jinfeng Liao

TL;DR
This paper reviews the phase structure of QCD matter under rotation, exploring effects of magnetic fields, chiral phase transition, pion condensation, and color superconductivity using effective models.
Contribution
It provides a comprehensive overview of recent developments in understanding QCD matter under rotation, including magnetic effects and various phase transitions.
Findings
Rotation influences chiral symmetry restoration.
Magnetic fields affect phase transition behavior.
Pion condensation and color superconductivity are impacted by rotation.
Abstract
We give an introduction to the phase structure of QCD matter under rotation based on effective four-fermion models. The effects of the magnetic field on the rotating QCD matter are also explored. Recent developments along these directions are overviewed, with special emphasis on the chiral phase transition. The rotational effects on pion condensation and color superconductivity are also discussed.
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