Searching for the properties of nuclear matter using proton-carbon and deuteron-carbon collisions at 4.2 a gev/c
arXiv:1210.7907 · doi:10.1142/S0218301312500954
Abstract
The present work reports the use of nuclear transparency effect of protons in proton and deuteron carbon interactions at 4.2 A GeV/c to get information about the states of nuclear matter. The half angle technique is used to extract the information on nuclear transparency. The results are compared with Dubna version of Cascade model. The average values of multiplicity, momentum and transverse momentum of protons are analyzed as a function of the number of identified protons in an event. We observed some evidence and trends in the data which could be considered as transparency effect. Analysis of the results shows that the leading effect is the basis of the observed transparency. Some contribution to the observed effect could be the existing short range correlations and the scaling power law s^-N, for exclusive two body hard scattering.
7 pages, 2 figures
References in corpus (6)
- Probing Cold Dense Nuclear Matter
- Evidence for the Strong Dominance of Proton-Neutron Correlations in Nuclei
- Tensor Forces and the Ground-State Structure of Nuclei
- Measurement of Nuclear Transparency for the A(e,e' pi^+) Reaction
- Color transparency and short-range correlations in exclusive pion photo- and electroproduction from nuclei
- Some Properties of the Central pi--Meson Carbon Interactions at 40 Gev/C