English

A consistent four-body CDCC model of low-energy reactions: Application to 9Be + 208Pb

Nuclear Theory 2016-06-22 v1 Nuclear Experiment

Abstract

We investigate the 9^9Be + 208^{208}Pb elastic scattering, breakup and fusion at energies around the Coulomb barrier. The three processes are described simultaneously, with identical conditions of calculations. The 9^{9}Be nucleus is defined in an α+α\alpha + \alpha + n three-body model, using the hyperspherical coordinate method. We first analyze spectroscopic properties of 9^9Be, and show that the model provides a fairly good description of the low-lying states. The scattering with 208^{208}Pb is then studied with the Continuum Discretized Coupled Channel (CDCC) method, where the α+α\alpha+\alpha + n continuum is approximated by a discrete number of pseudostates. Optical potentials for the α\alpha+ 208^{208}Pb and n+ 208^{208}Pb systems are taken from the literature. We present elastic-scattering and fusion cross sections at different energies.

Keywords

Cite

@article{arxiv.1510.00752,
  title  = {A consistent four-body CDCC model of low-energy reactions: Application to 9Be + 208Pb},
  author = {M. S. Hussein and P. Descouvemont and L. F. Canto},
  journal= {arXiv preprint arXiv:1510.00752},
  year   = {2016}
}

Comments

8 pages, 3 figures, Proceedings of the International Conference on Nucleus-Nucleus Collisions, NN 2015, Catania-Italy. arXiv admin note: substantial text overlap with arXiv:1410.6410