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- W2999160080 abstract "Abstract The double-folding formalism has been applied to calculate the nucleus-nucleus potential by the use of the effective nucleon-nucleon (Migdal) potential and the nuclear densities of the interacting nuclei presented as the Gaussian-type functions and polynomials. The Coulomb barrier heights obtained by this way and by different types of the proximity potentials have been compared. The deviations of the theoretical values of the Coulomb barrier from the values extracted from the experimental data are discussed. The capture cross section calculated for the reactions with the light projectiles is in good agreement with experimental values. The theoretical results obtained for the 16 O+ 144 Sm and 17 O+ 144 Sm reactions could reproduce a significant difference in the experimental results for these reaction, which is related with the extra neutron in 17 O. The overestimation of the experimental data obtained from different sources by the curve of the theoretical results of the 40 Ca+ 96 Zr reactions is explained by the appearance of the slight hindrance to complete fusion, i.e the capture and fusion cross sections are not equal in this reaction." @default.
- W2999160080 created "2020-01-23" @default.
- W2999160080 creator A5003237757 @default.
- W2999160080 creator A5063638343 @default.
- W2999160080 date "2020-03-09" @default.
- W2999160080 modified "2023-09-23" @default.
- W2999160080 title "Comparative analysis of the Coulomb barrier in heavy-ion collisions by the double-folding method" @default.
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- W2999160080 doi "https://doi.org/10.1088/1361-6471/ab67ea" @default.
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