English

Fusion dynamics around the Coulomb barrier

Nuclear Theory 2009-11-10 v1

Abstract

We perform exact coupled-channels calculations, taking into account properly the effects of Coulomb coupling and the finite excitation energy of collective excitations in the colliding nuclei, for three Fm formation reactions, 37^{37}Cl + 209^{209}Bi, 45^{45}Sc + 197^{197}Au, and 59^{59}Co + 181^{181}Ta. For the 37^{37}Cl + 209^{209}Bi and 45^{45}Sc + 197^{197}Au reactions, those calculations well reproduce the experimental total fission cross sections, and a part of the extra-push phenomena can be explained in terms of the Coulomb excitations to multi-phonon states. On the other hand, for the heaviest system, the deep-inelastic collisions become much more significant, and the fission cross sections are strongly overestimated. We also discuss the surprisingly large surface diffuseness parameters required to fit recent high-precision fusion data for medium-heavy systems, in connection with the fusion supression observed in massive systems.

Keywords

Cite

@article{arxiv.nucl-th/0311008,
  title  = {Fusion dynamics around the Coulomb barrier},
  author = {K. Hagino and N. Rowley and T. Ohtsuki and M. Dasgupta and J. O. Newton and D. J. Hinde},
  journal= {arXiv preprint arXiv:nucl-th/0311008},
  year   = {2009}
}

Comments

10 pages, 6 ps figures. Uses aipxfm.sty. A talk given at the Tours Symposium on Nuclear Physics V, August 26 - 29, 2003, Tours, France

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