English

A large-$N_c$ PNJL model with explicit Z$_{N_c}$ symmetry

High Energy Physics - Phenomenology 2012-02-02 v2

Abstract

A PNJL model is built, in which the Polyakov-loop potential is explicitly ZNc_{N_c}-symmetric in order to mimic a Yang-Mills theory with gauge group SU(NcN_c). The physically expected large-NcN_c and large-TT behaviours of the thermodynamic observables computed from the Polyakov-loop potential are used to constrain its free parameters. The effective potential is eventually U(1)-symmetric when NcN_c is infinite. Light quark flavours are added by using a Nambu-Jona-Lasinio (NJL) model coupled to the Polyakov loop (the PNJL model), and the different phases of the resulting PNJL model are discussed in 't Hooft's large-NcN_c limit. Three phases are found, in agreement with previous large-NcN_c studies. When the temperature TT is larger than some deconfinement temperature TdT_d, the system is in a deconfined, chirally symmetric, phase for any quark chemical potential μ\mu. When T<TdT<T_d however, the system is in a confined phase in which chiral symmetry is either broken or not. The critical line Tχ(μ)T_\chi(\mu), signalling the restoration of chiral symmetry, has the same qualitative features than what can be obtained within a standard Nc=3N_c=3 PNJL model.

Keywords

Cite

@article{arxiv.1107.4672,
  title  = {A large-$N_c$ PNJL model with explicit Z$_{N_c}$ symmetry},
  author = {F. Buisseret and G. Lacroix},
  journal= {arXiv preprint arXiv:1107.4672},
  year   = {2012}
}

Comments

To appear in Phys Rev D