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Hard Two-Photon Contribution to Elastic Lepton-Proton Scattering Determined by the OLYMPUS Experiment

  • (OLYMPUS Collaboration)
  • Massachusetts Institute of Technology
  • Arizona State University
  • Johannes Gutenberg University Mainz
  • Hampton University
  • A. Alikhanian Yerevan Institute of Physics
  • University of Bonn
  • Petersburg Nuclear Physics InstituteGatchina
  • German Electron Synchrotron
  • University of New Hampshire
  • University of Ferrara
  • Istituto Superiore di Sanita
  • National Institute for Nuclear Physics
  • University of Glasgow

Research output: Contribution to journalArticlepeer-review

95 Scopus citations

Abstract

The OLYMPUS Collaboration reports on a precision measurement of the positron-proton to electron-proton elastic cross section ratio, R2γ, a direct measure of the contribution of hard two-photon exchange to the elastic cross section. In the OLYMPUS measurement, 2.01 GeV electron and positron beams were directed through a hydrogen gas target internal to the DORIS storage ring at DESY. A toroidal magnetic spectrometer instrumented with drift chambers and time-of-flight scintillators detected elastically scattered leptons in coincidence with recoiling protons over a scattering angle range of ≈20° to 80°. The relative luminosity between the two beam species was monitored using tracking telescopes of interleaved gas electron multiplier and multiwire proportional chamber detectors at 12°, as well as symmetric Møller or Bhabha calorimeters at 1.29°. A total integrated luminosity of 4.5 fb-1 was collected. In the extraction of R2γ, radiative effects were taken into account using a Monte Carlo generator to simulate the convolutions of internal bremsstrahlung with experiment-specific conditions such as detector acceptance and reconstruction efficiency. The resulting values of R2γ, presented here for a wide range of virtual photon polarization 0.456<ϵ<0.978, are smaller than some hadronic two-photon exchange calculations predict, but are in reasonable agreement with a subtracted dispersion model and a phenomenological fit to the form factor data.

Original languageEnglish
Article number092501
JournalPhysical Review Letters
Volume118
Issue number9
DOIs
StatePublished - Mar 3 2017

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