arXiv · 0806.4018
Inverse scattering J-matrix approach to nucleon-nucleus scattering and the shell model
Abstract
The $J$-matrix inverse scattering approach can be used as an alternative to a conventional $R$-matrix in analyzing scattering phase shifts and extracting resonance energies and widths from experimental data. A great advantage of the $J$-matrix is that it provides eigenstates directly related to the ones obtained in the shell model in a given model space and with a given value of the oscillator spacing $\hbarΩ$. This relationship is of a particular interest in the cases when a many-body system does not have a resonant state or the resonance is broad and its energy can differ significantly from the shell model eigenstate. We discuss the $J$-matrix inverse scattering technique, extend it for the case of charged colliding particles and apply it to the analysis of $nα$ and $pα$ scattering. The results are compared with the No-core Shell Model calculations of $^5$He and $^5$Li.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
A. M. Shirokov, A. I. Mazur, J. P. Vary, E. A. Mazur. 2008-10-06. Inverse scattering J-matrix approach to nucleon-nucleus scattering and the shell model. https://doi.org/10.1103/physrevc.79.014610
Cite the original work for its findings. Save a collection to share your selection of sources.