arXiv · 0711.0553
Microscopic model analyses of proton scattering from 12C, 20Ne, 24Mg, 28Si and 40Ca
Abstract
Differential cross sections and analyzing powers for elastic scattering from, and for inelastic proton scattering to a set of $2^+_1$ states in, ${}^{12}$C, ${}^{20}$Ne, ${}^{24}$Mg, ${}^{28}$Si and ${}^{40}$Ca, and for a set of energies between 35 to 250 MeV, have been analyzed. A $g$-folding model has been used to determine optical potentials and a microscopic distorted wave approximation taken to analyze the inelastic data. The effective nucleon-nucleon interactions used to specify the optical potentials have also been used as the transition operators in the inelastic scattering processes. Shell and large space Hartree-Fock models of structure have been used to describe the nuclear states.
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Y. J. Kim, K. Amos, S. Karataglidis, W. A. Richter. 2007-11-04. Microscopic model analyses of proton scattering from 12C, 20Ne, 24Mg, 28Si and 40Ca. https://doi.org/10.1016/j.nuclphysa.2008.04.006
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