English

Width of the $\Delta$ resonance in nuclei

Nuclear Theory 2008-11-26 v1

Abstract

In this work we evaluate the imaginary part of the isobar Δ\Delta self-energy ΣΔ\Sigma_{\Delta} from the two-body absorption process Δ+N2N\Delta+N\rightarrow 2N. This contribution is calculated using a recently developed non-relativistic scheme, which allows for an evaluation of the self-energy with a basis of single-particle states appropriate for both bound hole states and for particle states in the continuum. In order to test the medium dependence of the self-energy, we calculate the two-body absorption term ΣΔA2\Sigma_{\Delta}^{A2} for several finite nuclei with N=ZN=Z, i.e.\ 16^{16}O, 40^{40}Ca and 100^{100}Sn. The resulting self-energy, which is energy dependent and non-local, is compared with a simple parameterization derived from nuclear matter.

Keywords

Cite

@article{arxiv.nucl-th/9309019,
  title  = {Width of the $\Delta$ resonance in nuclei},
  author = {M. Hjorth-Jensen and H. Müther and A. Polls},
  journal= {arXiv preprint arXiv:nucl-th/9309019},
  year   = {2008}
}

Comments

5 pages 3 figures can be obtained from the authors, TU-93-1609