arXiv:2502.10134·v2·High Energy Physics — Phenomenology
Chiral symmetry restoration in QC_2D from effective model using the functional renormalization group
G. Fejos🇯🇵 · D. Suenaga🇯🇵
Abstract
The order of the chiral phase transition in two-color and two-flavor QCD is investigated using the functional renormalization group (FRG) technique in an effective model setting. We calculate the function of all couplings in the dimensionally reduced Ginzburg-Landau free energy functional with Pauli-Gürsey SU(4) symmetry. We compare results of the perturbative expansion approach with those obtained via the FRG, evaluated directly in dimensions. The perturbative results suggest that the fixed-point structure is more intricate than that of three-color QCD, a conclusion further supported by the FRG analysis. Both methods display an infrared stable fixed point at infinite axial anomaly; however, the FRG approach also reveals the existence of anomaly-free fixed points, which can become infrared stable if the anomaly in the underlying theory vanishes at the critical temperature. These findings imply that the phase transition can be of second order, consistent with earlier findings for three colors.
Comments: 7 pages, 1 figure, matches published version