2000/05/10 by C. Ciofi degli Atti, L. P. Kaptari, D. Treleani · 3 citations
Engineering · Physics and Astronomy · #Atomic physics #Computer science #Deuterium #Nuclear Physics and Applications #Nuclear physics #Nuclear physics research studies #Nuclear reactor physics and engineering #Physics #Programming language #State (computer science) #nucl-th
paper · pdf · doi:10.1103/physrevc.63.044601
published as Phys.Rev. C63 (2001) 044601 · 16 LaTeX pages, 10 eps-figures, 1 table
arxiv created 2000/05/10 · openalex publication_date 2001/03/06 · arxiv updated 2009/12/01 · openalex created_date 2016/06/24 · openalex updated_date 2026/08/05
The role of final state interactions (FSIs) in the inclusive quasielastic disintegration of the deuteron is investigated treating the two-nucleon final state within the exact continuum solutions of the nonrelativistic Schr"odinger equation, as well as within the Glauber multiple-scattering approach. It is shown that for values of the Bjorken scaling variable xBj\ensuremath≃1 both approaches provide similar results, except for the case xBj\ensuremath\gtrsim1, where they appreciably disagree. It is demonstrated that present experimental data, which are mostly limited to a region of four-momentum transfer [Q2\ensuremath\lesssim4 (GeV/c)2] where the center-of-mass energy of the final state is below the pion threshold production, can be satisfactorily reproduced by an approach based on an exact solution of the Schr"odinger equation and not by the Glauber approach.