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Electroweak radiative corrections to e+e-→WW→4 fermions in double-pole approximation - The RACOONWW approach

  • Paul Scherrer Institute
  • Bielefeld University
  • Leipzig University

Research output: Contribution to journalArticlepeer-review

201 Scopus citations

Abstract

We calculate the complete O(α) electroweak radiative corrections to e+e-→WW→4f in the electroweak Standard Model in the double-pole approximation. We give analytical results for the non-factorizable virtual corrections and express the factorizable virtual corrections in terms of the known corrections to on-shell W-pair production and W decay. The calculation of the bremsstrahlung corrections, i.e., the processes e+e-→4fγ in lowest order, is based on the full matrix elements. The matching of soft and collinear singularities between virtual and real corrections is done alternatively in two different ways, namely by using a subtraction method and by applying phase-space slicing. The O(α) corrections as well as higher-order initial-state photon radiation are implemented in the Monte Carlo generator RACOONWW. Numerical results of this program are presented for the W-pair-production cross section, angular and W-invariant-mass distributions at LEP2. We also discuss the intrinsic theoretical uncertainty of our approach.

Original languageEnglish
Pages (from-to)67-117
Number of pages51
JournalNuclear Physics B
Volume587
Issue number1-3
DOIs
StatePublished - Oct 30 2000

Keywords

  • 12.15.Ii
  • 12.15.Lk
  • 14.70.-e
  • 14.70.Fm
  • 4-fermion production
  • Electroweak radiative corrections
  • Monte Carlo integration
  • W-pair production

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