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Quark spectral properties above Tc from Dyson-Schwinger equations

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arxiv 1009.3762 v1 pith:HYNG6ZDX submitted 2010-09-20 hep-ph hep-latnucl-th

classification hep-phhep-latnucl-th
keywords quarkspectraldyson-schwingerfunctionaboveanalysisequationspropagator
verification ladder T0 review T1 audit T2 compute T3 formal
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We report on an analysis of the quark spectral representation at finite temperatures based on the quark propagator determined from its Dyson-Schwinger equation in Landau gauge. In Euclidean space we achieve nice agreement with recent results from quenched lattice QCD. We find different analytical properties of the quark propagator below and above the deconfinement transition. Using a variety of ansaetze for the spectral function we then analyze the possible quasiparticle spectrum, in particular its quark mass and momentum dependence in the high temperature phase. This analysis is completed by an application of the Maximum Entropy Method, in principle allowing for any positive semi-definite spectral function. Our results motivate a more direct determination of the spectral function in the framework of Dyson-Schwinger equations.

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  1. Spectral sum rules and phase transition in strongly coupled QCD

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    In the Gribov-Zwanziger framework, the thermal quark spectral function obeys new sum rules and exhibits a coupling-driven transition from three poles to a single pole, with the thermal mass vanishing at a critical cou...

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