Nonlocal PNJL model beyond mean field and the QCD phase transition
A.E. Radzhabov, D. Blaschke, M. Buballa, M.K. Volkov

TL;DR
This paper extends the nonlocal PNJL model beyond mean field using a 1/Nc expansion, analyzing mesonic corrections' effects on the QCD phase transition and comparing results with lattice data and chiral perturbation theory.
Contribution
It introduces a consistent 1/Nc expansion to the nonlocal PNJL model, refitting parameters to physical pion properties and studying mesonic corrections at finite temperature.
Findings
1/Nc corrections significantly affect the chiral condensate melting at low temperatures.
The model predicts a lowered chiral transition temperature with certain Polyakov loop parameters.
Near the phase transition, the 1/Nc expansion breaks down, indicating the need for non-perturbative methods.
Abstract
A nonlocal chiral quark model is consistently extended beyond mean field using a strict 1/Nc expansion scheme. The parameters of the nonlocal model are refitted so that the physical values of the pion mass and the weak pion decay constant are obtained. The size of the 1/Nc correction to the quark condensate is carefully studied and compared with the usual local Nambu-Jona-Lasinio model. It is found that even the sign of the corrections can be different. This can be attributed to the mesonic cut-off of the local model. The model is also applied to finite temperature. We find that the 1/Nc corrections dominate the melting of the chiral condensate at low temperatures, T<100 MeV, in agreement with chiral perturbation theory. On the other hand, the relative importance of the 1/Nc corrections in the cross-over regime depends on the parameter T0 of the Polyakov loop potential. For T0=270 MeV,…
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