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- W1531170025 abstract "Using the double folding model (DF), the real part of the central optical potential for the 12 C + 12 C system is derived. This potential as well as the single-folding cluster model potential (SFC) are used to calculate the total and differential cross sections for 12 C elastically scattered on 12 C at three laboratory energies, E lab. = 300, 344.5 and 360 MeV. The calculations are carried out with five sets of nucleon-nucleon (NN) interaction of the integrable Gaussian form and two sets of parameters for the nuclear matter density of the harmonic oscillator form. The transparency of the target nucleus is found to increase as the projectile energy increases. Good fits between the present calculations and the experimental data, as well as with previous calculations, are obtained. The simple methods used here for calculating the real part of the optical potential reduce the potential computing time enormously. The suitable choice of NN interaction as well as nuclear matter densities is important." @default.
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- W1531170025 date "1998-02-01" @default.
- W1531170025 modified "2023-09-25" @default.
- W1531170025 title "Elastic Scattering of <sup>12</sup>C by <sup>12</sup>C at Intermediate Energies" @default.
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- W1531170025 doi "https://doi.org/10.1143/jjap.37.657" @default.
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