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article · Chinese Physics C

Semi-microscopic analysis of <sup>20</sup>Ne +<sup>130</sup>Te elastic and inelastic scattering at 15.3 <i>A</i> MeV

Abstract

Abstract The new measured data of elastic and inelastic 20 Ne+ 130 Te scattering at an energy of 15.3 A MeV are analyzed in framework of the nuclear optical potential. Three types of semi-microscopic potentials are used: the real part is calculated using a double folding model in conjunction with the conventional phenomenological Woods-Saxon (WS) potential for the imaginary part. Two real cluster models are constructed using the cluster structure of 20 Ne nucleus as 5 α and α + 16 O. The real part of the third potential is generated using a CDM3Y6 interaction employed for comparison. Three excited energies to the superposition of the projectile and target states, ground-state (Quasi), 1.6 and 2.5 MeV are investigated using deformed potentials. The contributions of these states are calculated using a one-step distorted wave Born approximation and coupled Channels approaches. Successful calculations and results using semi-microscopic potentials in simple one-channel and coupled channels are obtained. The values of cross section and volume integrals require more contributions to enable more comparisons regarding this project.

Research topics

  • Nuclear Physics and Applications
  • Nuclear Materials and Properties
  • High-pressure geophysics and materials

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DOI: 10.1088/1674-1137/ad9305

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