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Folding model analysis of 6,7Li elastic scattering at 12.5–53 MeV/u

✍ Scribed by M. El-Azab Farid; M.A. Hassanain


Publisher
Elsevier Science
Year
2002
Tongue
English
Weight
296 KB
Volume
697
Category
Article
ISSN
0375-9474

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✦ Synopsis


6,7

Li-nucleus double-folding optical potentials have been constructed using the JLM and a gaussian shape of the effective nucleon-nucleon interaction. Angular distributions of the differential cross sections of 6,7 Li elastic scattering from 12 C, 28 Si, 40 Ca, 58 Ni, 90 Zr and 208 Pb targets at 12.5-53 MeV/u were analyzed using the derived potentials. An energy-dependent reducing renormalization coefficient was required for the real component of the JLM optical potential in order to obtain successful predictions of the observed cross sections even when the projectile density-dependence was considered. A similar behavior was found for calculations based on the density-independent gaussian version of the effective nucleon-nucleon interaction. However, no renormalization was needed when a density-dependence approximation was involved. The energyand target mass number-dependence in the renormalization factor, real volume integrals and total reaction cross sections are investigated.


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Density-independent folding analysis of
✍ M. El-Azab Farid; M.A. Hassanain 📂 Article 📅 2000 🏛 Elsevier Science 🌐 English ⚖ 533 KB

The differential cross sections of 6,7 Li elastic scattering from 12 C, 28 S, 40 Ca, 58 Ni, 90 Zr and 208 Pb targets at E/A P = 12.5-53 MeV/u have been analyzed using density-independent double folding optical potentials. The calculations are built upon a very simple phenomenological nucleonnucleon