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Production of e+e-pairs accompanied by nuclear dissociation in ultraperipheral heavy-ion collisions

  • STAR Collaboration
  • University of Birmingham
  • Panjab University
  • Variable Energy Cyclotron Centre
  • Kent State University
  • Yale University
  • Brookhaven National Laboratory
  • Joint Institute for Nuclear Research
  • National Institute for Subatomic Physics
  • Indiana University Bloomington
  • Purdue University
  • Institut de Recherches Subatomiques
  • Ohio State University
  • Wayne State University
  • Goethe University Frankfurt
  • University of Rajasthan
  • University of Washington
  • Rice University
  • SUBATECH
  • Moscow Engineering Physics Institute
  • Czech Academy of Sciences
  • Argonne National Laboratory
  • Chinese Academy of Sciences
  • Lawrence Berkeley National Laboratory
  • University of California at Davis
  • Warsaw University of Technology
  • University of Science and Technology of China
  • University of California at Los Angeles
  • Tsinghua University
  • Creighton University
  • University of California at Berkeley
  • Universidade de São Paulo
  • Institute for High Energy Physics
  • Institute of Physics
  • Max Planck Institute for Physics (Werner Heisenberg Institute)
  • Texas A&M University
  • Valparaiso University
  • University of Jammu
  • Pennsylvania State University
  • University of Texas at Austin
  • California Institute of Technology
  • Carnegie Mellon University
  • Massachusetts Institute of Technology
  • City University of New York
  • Central China Normal University
  • University of Zagreb
  • Michigan State University
  • Indian Institute of Technology Bombay

Producción científica: Contribución a una revistaArtículorevisión exhaustiva

132 Citas (Scopus)

Resumen

We present data on e+e-pair production accompanied by nuclear breakup in ultraperipheral gold-gold collisions at a center of mass energy of 200 GeV per nucleon pair. The nuclear breakup requirement selects events at small impact parameters, where higher-order diagrams for pair production should be enhanced. We compare the data with two calculations: one based on the equivalent photon approximation, and the other using lowest-order quantum electrodynamics (QED). The data distributions agree with both calculations, except that the pair transverse momentum spectrum disagrees with the equivalent photon approach. We set limits on higher-order contributions to the cross section.

Idioma originalInglés
Número de artículo031902
Páginas (desde-hasta)319021-319026
Número de páginas6
PublicaciónPhysical Review C - Nuclear Physics
Volumen70
N.º3
DOI
EstadoPublicada - 1 sep. 2004
Publicado de forma externa

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