Study of QCD Phase Diagram with Non-Zero Chiral Chemical Potential
V.V. Braguta, E.-M. Ilgenfritz, A.Yu. Kotov, B. Petersson, S.A., Skinderev

TL;DR
This study uses lattice simulations to explore how a non-zero chiral chemical potential affects the QCD phase diagram, revealing that the critical temperature increases with higher chiral chemical potential.
Contribution
It provides new lattice simulation data on the impact of chiral chemical potential on QCD phase transitions, focusing on the critical temperature behavior.
Findings
Critical temperature increases with chiral chemical potential
Chiral symmetry restoration is influenced by chemical potential
Confinement/deconfinement transition shifts with chemical potential
Abstract
In this paper we report on lattice simulations of SU(3)-QCD with non-zero chiral chemical potential. We focus on the influence of the chiral chemical potential on the confinement/deconfinement phase transition and the breaking/restoration of chiral symmetry. The simulation is carried out with dynamical Wilson fermions. We find that the critical temperature rises as the chiral chemical potential grows.
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