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Infrared singularities in Landau gauge Yang-Mills theory

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arxiv 0801.2762 v4 pith:AM3UTJPU submitted 2008-01-17 hep-th hep-lathep-ph

classification hep-thhep-lathep-ph
keywords infraredgaugelandauanalysisdivergencesdynamicsexternalfind
verification ladder T0 review T1 audit T2 compute T3 formal

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We present a more detailed picture of the infrared regime of Landau gauge Yang-Mills theory. This is done within a novel framework that allows one to take into account the influence of finite scales within an infrared power counting analysis. We find that there are two qualitatively different infrared fixed points of the full system of Dyson-Schwinger equations. The first extends the known scaling solution, where the ghost dynamics is dominant and gluon propagation is strongly suppressed. It features in addition to the strong divergences of gluonic vertex functions in the previously considered uniform scaling limit, when all external momenta tend to zero, also weaker kinematic divergences, when only some of the external momenta vanish. The second solution represents the recently proposed decoupling scenario where the gluons become massive and the ghosts remain bare. In this case we find that none of the vertex functions is enhanced, so that the infrared dynamics is entirely suppressed. Our analysis also provides a strict argument why the Landau gauge gluon dressing function cannot be infrared divergent.

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Cited by 3 Pith papers

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