English

Few-body semiclassical approach to nucleon transfer and emission reactions

Nuclear Theory 2015-06-16 v1

Abstract

A three-body semiclassical model is proposed to describe the nucleon transfer and emission reactions in a heavy-ion collision. In this model the two heavy particles, i.e. nuclear cores A1(ZA1,MA1)_1(Z_{A_1}, M_{A_1}) and A2(ZA2,MA2)_2(Z_{A_2}, M_{A_2}), move along classical trajectories R1(t)\vec R_1(t) and R2(t)\vec R_2(t) respectively, while the dynamics of the lighter neutron, n, is considered from a quantum mechanical point of view. Here, MiM_i are the nucleon masses and ZiZ_i are the Coulomb charges of the heavy nuclei (i=1,2i=1,2). A Faddeev-type semiclassical formulation using realistic paired nuclear-nuclear potentials is applied so that all three channels (elastic, rearrangement and break-up) are described in an unified manner. In order to solve these time-dependent equations the Faddeev components of the total three-body wave-function are expanded in terms of the input and output channel target eigenfunctions. In the special case when the nuclear cores are identical (A1_1 \equiv A2_2) and the two-level approximation in the expansion over target functions the time-dependent semiclassical Faddeev equations are resolved in an explicit way. To determine the realistic R1(t)\vec R_1(t) and R2(t)\vec R_2(t) trajectories of the nuclear cores a self-consistent approach based on the Feynman path integral theory is applied.

Keywords

Cite

@article{arxiv.1307.2613,
  title  = {Few-body semiclassical approach to nucleon transfer and emission reactions},
  author = {Renat A. Sultanov and D. Guster},
  journal= {arXiv preprint arXiv:1307.2613},
  year   = {2015}
}

Comments

15 pages, 1 figure