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Dao Tien Khoa; Shitikova, K.V.
Joint Inst. for Nuclear Research, Dubna (USSR). Lab. of Theoretical Physics1985
Joint Inst. for Nuclear Research, Dubna (USSR). Lab. of Theoretical Physics1985
AbstractAbstract
[en] The method of hyperspherical functions and the quasiparticle-phonon nuclear model are applied for microscopic study of elastic and inelastic heavy ion scattering. The heavy-ion interaction potential is calculated within the folding-model using the M3Y effective nucleon-nucleon interaction. Contributions from the nuclear and Coulomb parts of the heavy-ion potential to the excitation of low-lying one-phonon states in nucleu-target and the influence of isoscalar and isovector effective forces used in the phonon calculation have been considered. Some effects of the microscopic nuclear wave functions used in the density calculation are also indicated
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1985; 16 p; 39 refs.; 5 figs.; submitted to the journal Yad. Fiz.
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Report
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Numerical Data
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CARBON 12 REACTIONS, COULOMB SCATTERING, DIFFERENTIAL CROSS SECTIONS, DWBA, ENERGY-LEVEL TRANSITIONS, EXCITED STATES, HYPERGEOMETRIC FUNCTIONS, INELASTIC SCATTERING, K-HARMONICS METHOD, LEAD 208 TARGET, MEV RANGE 100-1000, MEV RANGE 10-100, NEODYMIUM 142 TARGET, NEODYMIUM 144 TARGET, NUCLEAR POTENTIAL, PROBABILITY, QUASIPARTICLE-PHONON MODEL, THEORETICAL DATA, WAVE FUNCTIONS, ZIRCONIUM 90 TARGET
BASIC INTERACTIONS, BORN APPROXIMATION, CROSS SECTIONS, DATA, ELASTIC SCATTERING, ELECTROMAGNETIC INTERACTIONS, ENERGY LEVELS, ENERGY RANGE, FUNCTIONS, HEAVY ION REACTIONS, INFORMATION, INTERACTIONS, MATHEMATICAL MODELS, MEV RANGE, NUCLEAR MODELS, NUCLEAR REACTIONS, NUMERICAL DATA, POTENTIALS, SCATTERING, TARGETS
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