English

An inversion procedure for coupled-channel scattering: determining the deuteron-nucleus tensor interaction

Nuclear Theory 2009-10-31 v1

Abstract

We present a practical SS-matrix to potential inversion procedure for coupled-channel scattering. The inversion technique developed is applied to non-diagonal SllJS^J_{ll'} for spin one projectiles, yielding a tensor interaction TRT_{\rm R}, and is also applicable to spin-1/2 plus spin-1/2 scattering. The method is a generalization of the iterative-perturbative, IP, method. It is tested and evaluated and we investigate the degree of uniqueness of the potential, particularly for cases where there is insufficient information to define the potential uniquely. We examine the potentials which result when the SS-matrix is generated from a TPT_{\rm P} interaction. We also develop the generalisation, using established procedures, of IP SS-matrix-to-potential inversion to direct observable-to-potential inversion. This `direct inversion' procedure is demonstrated to be an efficient method for finding a multi-component potential including a TRT_{\rm R} interaction fitting multi-energy σ\sigma, iT11{\rm i}T_{11}, T20T_{20}, T21T_{21} and T22T_{22} data for the scattering of spin-1 nuclei from spin-zero target. It is applicable to other channel spin 1 cases.

Keywords

Cite

@article{arxiv.nucl-th/9907110,
  title  = {An inversion procedure for coupled-channel scattering: determining the deuteron-nucleus tensor interaction},
  author = {S. G. Cooper and V. I. Kukulin and R. S. Mackintosh and V. N. Pomerantsev},
  journal= {arXiv preprint arXiv:nucl-th/9907110},
  year   = {2009}
}

Comments

20 pages RevTeX, 6 postscript figures

R2 v1 2026-07-22T18:46:31.289Z