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      Classical Gluon Radiation in Ultrarelativistic Nucleus-Nucleus Collisions

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          Abstract

          The classical Yang-Mills equations are solved perturbatively in covariant gauge for a collision of two ultrarelativistic nuclei. The nuclei are taken as ensembles of classical color charges on eikonal trajectories. The classical gluon field is computed in coordinate space up to cubic order in the coupling constant g. We construct the Feynman diagrams corresponding to this field and show the equivalence of the classical and diagrammatic approaches. An argument is given which demonstrates that at higher orders in g the classical description of the process breaks down. As an application, we calculate the energy, number, and multiplicity distributions of produced soft gluons and reproduce earlier results by Gunion and Bertsch and by Kovner, McLerran, and Weigert.

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          Author and article information

          Journal
          31 March 1997
          Article
          10.1103/PhysRevC.56.1084
          hep-ph/9704201
          c9c155ed-91ae-45bd-9b41-c61e7c01fd74
          History
          Custom metadata
          CU-TP-824; DU-TH-141
          Phys.Rev.C56:1084-1094,1997
          15 pages, REVTeX, 3 figures
          hep-ph

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