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Microscopic Description of the Exotic Nuclei Reactions by Using Folding model Potentials
Journal article   Peer reviewed

Microscopic Description of the Exotic Nuclei Reactions by Using Folding model Potentials

Awad A. Ibraheem, King Khalid University Physics Department, M. A. Hassanain, New-Valley Faculty of Education Sciences Department, S. R. Mokhtar, M. El-Azab Farid, M. A. Zaki and Zakaria M. M. Mahmoud
AIP conference proceedings, Vol.1370(1), pp.251-255
01/01/2011

Abstract

BARYON-BARYON INTERACTIONS BETA DECAY RADIOISOTOPES BETA-MINUS DECAY RADIOISOTOPES COULOMB FIELD CROSS SECTIONS ELASTIC SCATTERING ELECTRIC FIELDS EVEN-EVEN NUCLEI FOLDING MODEL HADRON-HADRON INTERACTIONS HEAVY ION REACTIONS HELIUM 6 HELIUM 6 REACTIONS HELIUM ISOTOPES INTERACTIONS INTERMEDIATE MASS NUCLEI ISOTOPES LIGHT NUCLEI MATHEMATICAL MODELS MATTER MILLISECONDS LIVING RADIOISOTOPES NUCLEAR MATTER NUCLEAR MODELS NUCLEAR PHYSICS AND RADIATION PHYSICS NUCLEAR POTENTIAL NUCLEAR REACTIONS NUCLEI NUCLEON-NUCLEON INTERACTIONS PARTICLE INTERACTIONS POTENTIALS RADIOISOTOPES RENORMALIZATION SCATTERING STABLE ISOTOPES TARGETS TIN 120 TIN 120 TARGET TIN ISOTOPES
A microscopic folding approach based upon the effective M3Y nucleon-nucleon interaction and the nuclear matter densities of the interacting nuclei has been carried out to explain recently measured experimental data of the {sup 6}He+{sup 120}Sn elastic scattering reaction at four different laboratory energies near the Coulomb barrier. The corresponding reaction cross sections are also considered.

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