Interactions of 300-GeV protons with tungsten and chromium
- 1 February 1976
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review D
- Vol. 13 (3) , 558-565
- https://doi.org/10.1103/physrevd.13.558
Abstract
Targets consisting of tungsten and chromium powders imbedded in nuclear emulsion were exposed to the 300-GeV proton beam at the Fermi National Accelerator Laboratory. For each event found, the number of minimum-ionizing (shower) tracks and the number of heavily ionizing tracks were determined, and the production angles of the shower tracks were measured. For 39 chromium events, we find , , and . For 51 events in tungsten, we find , , and . The ratio , where is the average charged multiplicity in collisions, agrees with the form , where is the mean number of intranuclear collisions. However, no single model adequately explains both the multiplicity and the angular distribution data.
Keywords
This publication has 26 references indexed in Scilit:
- Charged-Particle Multiplicity in-Nucleus Interactions at 100 and 175 GeV/cPhysical Review Letters, 1975
- Multiple Pion Production in-Ne Collisions at 10.5 and 200 GeVPhysical Review Letters, 1975
- Cosmic ray results on the A dependence of multiplicity and angular distributions in proton nuclear interactions above 100 GeVPhysics Letters B, 1975
- Space-Time Structure of Hadronic Collisions and Nuclear Multiple ProductionPhysical Review Letters, 1974
- Unexpected apparent transparence of nuclear matter for high-energy hadrons, observed in p-nucleus collision at 200 GeVLettere al Nuovo Cimento (1971-1985), 1974
- Multiplicity distributions in proton-nucleus collisions at 67 and 200 GeVPhysics Letters B, 1973
- Method for Distinguishing between Multiparticle Production ModelsPhysical Review Letters, 1973
- Predictions for inclusive particle-nucleus reactions at accelerator and cosmic-ray energiesNuclear Physics B, 1973
- Method to Distinguish Between Multiparticle Production MechanismsPhysical Review D, 1972
- Hydrodynamic theory of multiple production of particlesIl Nuovo Cimento (1869-1876), 1956