Potential description of Li-6 elastic scattering by Si-28

作者:Hossain S*; Abdullah M N A; Basak A K; Das S K; Uddin M A; Tariq A S B; Reichstein I; Rusek K M; Malik F B
来源:European Physical Journal A, 2009, 41(2): 215-227.
DOI:10.1140/epja/i2009-10813-7

摘要

This work compares the performance of traditional phenomelogical Woods-Saxon (WS) and squared WS (SWS) potentials with that of a non-monotonic (NM) potential, microscopically derived using the energy-density functional (EDF) formalism from a realistic two-nucleon potential that includes the Pauli priciple. The experimental differential cross-sections (DCS) for the Li-6 elastic scattering by Si-28 over the incident energies E-Li = 7.5-99.0 MeV are well accounted for using the NM potential without the need of renormalization. At higher energies, in the range of 135.0-318.0 MeV, the EDF-generated NM potential parameters need a revision for the satisfactory description of the DCS data. The DCS data in the entire energy range of 7.5-318.0 are also well described by the WS and SWS potentials. The inclusion of a static spin-orbit potential to the NM, WS and SWS central potentials is found to reproduce the features of the vector analyzing power iT(11) data at 22.8 MeV reasonably well in each of the cases. However, the WS and SWS potential parameters needed to describe the DCS and iT(11) data are found inconsistent in terms of the variations of the real volume integrals per nucleon pair (VJR) with the incident energy. On the other hand, the EDF-generated NM potential is found to be consistent in terms of VJR and satisfactorily accounts for the DCS data in the entire range of energies considered herein and the features of the iT(11) data at 22.8 MeV.

  • 出版日期2009-8