Published May 1989 | Version v1
Journal article

Photon production at c.m. energies of 200 and 900 GeV

  • 1. Cambridge Univ. (UK). Cavendish Lab.
  • 2. Stockholm Univ. (Sweden). Inst. of Physics
  • 3. Bonn Univ. (Germany, F.R.). Physikalisches Inst.
  • 4. Interuniversity Inst. for High Energies, Brussels (Belgium)
  • 5. European Organization for Nuclear Research, Geneva (Switzerland)

Description

We present data on photon production in non single-diffractive panti p-collisions at c.m. energies of 200 and 900 GeV. Besides the general properties of photon production, i.e. pseudorapidity distribution and average multiplicity, we also investigate photon-charged two-particle pseudorapidity and multiplicity correlations. We find for the average number of photons in non single-diffractive panti p-collissions 22.2±1.4±2.0 at 200 GeV and 41.4±2.1±3.5 at 900 GeV, where the first error is statistical and the second systematic. The analysis of photon-charged particle multiplicity correlations reveals strong positive correlations between the average number of photons and the number of simultaneously produced charged particles, as expected from FNAL and ISR studies and from our result at 546 GeV. We obtain for the correlation slope 0.95±0.08±0.11 at 200 GeV and 1.09±0.09±0.13 at 900 GeV (first error is statistical and the second systematic). The investigation of photon-charged two-particle pseudorapidity correlations shows that these correlations are of short range and compatible with the observed charged two-particle pseudorapidity correlations. These correlations and the results for the average number of photons as a function of the produced number of charged particles favour the conclusion that photon sources other than π0 s contribute significantly to the observed photon yield in non single-diffractive panti p-collisions. For example, if all photons are assumed to come from π0 and η mesons, a η/π0 ratio of about 20% is inferred. (orig.)

Additional details

Publishing Information

Journal Title
Zeitschrift fuer Physik, C
Journal Volume
43
Journal Issue
1
Series
Z. Phys., C.
Journal Page Range
75-89
ISSN
0170-9739
CODEN
ZPCFD

Optional Information

Collaborations
UA5 Collaboration.