4.5 Article

An exact, finite, gauge-invariant, non-perturbative approach to QCD renormalization

Journal

ANNALS OF PHYSICS
Volume 359, Issue -, Pages 1-19

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.aop.2015.03.024

Keywords

QCD; Non-perturbative; Renormalization; Effective locality

Funding

  1. Julian Schwinger Foundation [GSF-13-07-0000]

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A particular choice of renormalization, within the simplifications provided by the non-perturbative property of Effective Locality, leads to a completely finite, non-perturbative approach to renormalized QCD, in which all correlation functions can, in principle, be defined and calculated. In this Model of renormalization, only the Bundle chain-Graphs of the cluster expansion are non-zero. All Bundle graphs connecting to closed quark loops of whatever complexity, and attached to a single quark line, provided no 'self-energy' to that quark line, and hence no effective renormalization. However, the exchange of momentum between one quark line and another, involves only the cluster-expansion's chain graphs, and yields a set of contributions which can be summed and provide a finite color-charge renormalization that can be incorporated into all other QCD processes. An application to High Energy elastic pp scattering is now underway. (C) 2015 Elsevier Inc. All rights reserved.

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