4.5 Article

Elastic scattering and fusion of 9Be+208Pb:: Density function dependence of the double folding renormalization -: art. no. 044612

Journal

PHYSICAL REVIEW C
Volume 69, Issue 4, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevC.69.044612

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Elastic scattering angular distributions of the weakly bound Be-9 projectile from Pb-208 have been measured for 11 beam energies ranging from 38 to 75 MeV. Analysis was carried out with the optical model, employing a double folded microscopic real potential with four different Be-9 density functions. The surface strengths of the interaction potentials were consistent and all exhibited a threshold anomaly. However, the renormalization factor required to obtain an optimum fit to the data varied significantly depending upon which Be-9 density function was used, cautioning that conclusions about the effect of breakup should not be based solely upon the value of this factor. Fusion cross sections predicted from these potentials were extracted using a barrier penetration model. Comparison with recently published experimental data suggests that the flux removed from complete fusion by breakup is balanced by the flux redirected into the partial fusion channel.

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