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Phase structure and propagators at nonvanishing temperature for QCD and QCD-like theories

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abstract

We investigate the universality of truncation schemes for Dyson-Schwinger equations developed for quantum chromodynamics in theories which differ from quantum chromodynamics only in the gauge group. Our specific choices are the gauge groups $SU(2)$ and $G_2$, for which lattice calculations at nonvanishing chemical potential are possible. Thus, corresponding calculations can provide benchmarks for testing calculations with functional equations. We calculate the quark and gluon propagators and determine the chiral and dual chiral condensates at vanishing density to determine the confinement/deconfinement and chiral transitions, respectively. We can reproduce the expected type of transitions in the quenched and unquenched cases. In general, all three theories react very similarly to modifications of the employed model for the quark-gluon vertex.

fields

hep-ph 1

years

2019 1

verdicts

ACCEPT 1

representative citing papers

DoFun 3.0: Functional equations in Mathematica

hep-ph · 2019-08-07 · accept · novelty 4.0

DoFun 3.0 extends the Mathematica package DoFun with automatic derivation of correlation functions of composite operators, plus workflow tools and a public GitHub repository.

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  • DoFun 3.0: Functional equations in Mathematica hep-ph · 2019-08-07 · accept · none · ref 56 · internal anchor

    DoFun 3.0 extends the Mathematica package DoFun with automatic derivation of correlation functions of composite operators, plus workflow tools and a public GitHub repository.