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Glauber-Theory Calculations of High-Energy Nuclear Scattering Observables Using Variational Monte Carlo Wave
W Horiuchi1,2,3, Y Suzuki3,4, R B Wiringa5
1Osaka Metropolitan University, Department of Physics, Osaka 558-8585, Japan.
Abstract:
Experiments using intermediate- to high-energy radioactive nuclear beams present numerous findings. Extracting important properties of physical observables relies on a firm theoretical analysis. Though Glauber theory is believed to work well, no convincing calculation has so far been done. We perform Glauber-theory calculations of both elastic differential cross sections and total reaction cross sections for p+^{12}C, ^{12}C+^{12}C, and ^{6}He+^{12}C systems. The wave functions of both ^{6}He and ^{12}C are generated by variational Monte Carlo calculations with spatial and spin-isospin correlations induced by realistic two- and three-nucleon potentials. Glauber's phase-shift function is computed by Monte Carlo integration up to all orders of nucleon-nucleon multiple scatterings. We show an excellent performance of the Glauber description to the selected data on the above systems. We also find that the cumulant expansion of the phase-shift function converges rapidly up to the second order for the above systems. This finding will open up interesting applications for the analysis of high-energy nuclear experiments.
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