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Chiral and deconfinement transitions in a magnetic background using the functional renormalization group with the Polyakov loop

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arxiv 1311.2093 v2 pith:Z3GBB755 submitted 2013-11-08 hep-ph

classification hep-ph
keywords looppolyakovchiraldeconfinementmagneticbackgroundfiniteinvestigate
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abstract

We use the Polyakov loop coupled quark-meson model to approximate low energy QCD and present results for the chiral and deconfinement transitions in the presence of a constant magnetic background $B$ at finite temperature $T$ and baryon chemical potential $\mu_B$. We investigate effects of various gluoni potentials on the deconfinement transition with and without a fermionic backreaction at finite $B$. Additionally we investigate the effect of the Polyakov loop on the chiral phase transition, finding that magnetic catalysis at low $\mu_B$ is present, but weakened by the Polyakov loop.

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  1. Anisotropic quark propagation and Zeeman effect in an external magnetic field

    hep-ph 2025-04 conditional novelty 5.0 of 10

    A Dyson-Schwinger calculation shows that in a magnetic field, quarks acquire distinct transverse and longitudinal effective masses, with the transverse mass always larger, and a mass splitting that grows roughly as th...

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