Functional renormalization group study of the jet quenching parameter near the QCD critical end point

Abstract

We investigate the jet quenching parameter q in the QCD phase diagram within a QCD-assisted low-energy effective theory using the functional renormalization group (fRG). Following the formalism that relates q to the spectral functions of the chiral order-parameter field, we compute the σ and π meson contributions to q at finite temperature and baryon chemical potential from analytically continued mesonic two-point functions. We find that q receives appreciable contributions mainly above the chiral phase boundary and exhibits a pronounced enhancement at large baryon chemical potential as the chiral crossover sharpens toward the critical end point (CEP), a behavior consistent with the picture of partonic critical opalescence (PCO), a pronounced enhancement of jet transverse momentum broadening induced by the critical σ field fluctuations.

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