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arXiv:1408.5457·v1·High Energy Physics — Phenomenology

Anomalous magnetic moment of hot quarks, inverse magnetic catalysis and reentrance of chiral symmetry broken phase

Sh. Fayazbakhsh🇮🇷 · N. Sadooghi🇮🇷

Abstract

The effect of anomalous magnetic moment of quarks on thermodynamic properties of the chiral condensate is studied, using of a two-flavor Nambu--Jona-Lasinio model at finite temperature , chemical potential , and in the presence of a uniform magnetic field . To this purpose, the Schwinger linear-in- ansatz for the quark anomalous magnetic moment in term of the nonperturbative Bohr magneton is considered. In a two-dimensional flavor space, it leads to the correction in the energy dispersion relation of quarks. Here, is the quark charge matrix. We consider three different sets for , and numerically determine the dependence of the constituent quark mass on and for fixed . By exploring the complete phase portrait of this model in -, -, and - phase spaces for various fixed , , and , we observe that inverse magnetic catalysis occurs for large enough . Moreover, in the regime of weak magnetic fields, the phenomenon of reentrance of chiral symmetry broken and restored phases occurs for and dependent .

Comments: 22 pages, 14 figures

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