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Analytical study of Yang-Mills theory in the infrared from first principles

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arxiv 1511.01015 v2 pith:FLV57IU3 submitted 2015-11-03 hep-ph hep-lathep-th

classification hep-phhep-lathep-th
keywords theoryanalyticalexpansioninfraredcouplingdatadimensionaldouble
verification ladder T0 review T1 audit T2 compute T3 formal
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Pure Yang-Mills SU(N) theory is studied in the Landau gauge and four dimensional space. While leaving the original Lagrangian unmodified, a double perturbative expansion is devised, based on a massive free-particle propagator. In dimensional regularization, all diverging mass terms cancel exactly in the double expansion, without the need to include mass counterterms that would spoil the symmetry of the Lagrangian. No free parameters are included that were not in the original theory, yielding a fully analytical approach from first principles. The expansion is safe in the infrared and is equivalent to the standard perturbation theory in the UV. At one-loop, explicit analytical expressions are given for the propagators and the running coupling and are found in excellent agreement with the data of lattice simulations. A universal scaling property is predicted for the inverse propagators and shown to be satisfied by the lattice data. Higher loops are found to be negligible in the infrared below 300 MeV where the coupling becomes small and the one-loop approximation is under full control.

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