Strong absorption model with antisymmetric S-matrix

Author:

Berezhnoy Yu. A.1,Molev A. S.12

Affiliation:

1. Faculty of Physics and Technology, A. I. Akhiezer Department of Theoretical Nuclear Physics and Higher Mathematics, Karazin Kharkov National University, Kharkov 61022, Ukraine

2. Institute of Electrophysics and Radiation Technologies, Kharkov 61002, Ukraine

Abstract

We present a strong absorption model with an [Formula: see text]-matrix in a new form of an antisymmetrized Fermi distribution for describing diffraction patterns of neutron–nucleus scattering at intermediate energies. The proposed antisymmetric [Formula: see text]-matrix has a form close to the conventional one and allows to obtain exact analytical expressions for the damping factor that determines the elastic scattering amplitude and the total cross-sections for interaction, reactions and elastic scattering. The use of an antisymmetrized Fermi function instead of the usual Fermi function in successful strong absorption models basically does not notably affect the calculated nucleon–nucleus elastic scattering differential cross-sections in the intermediate energy region.

Publisher

World Scientific Pub Co Pte Lt

Subject

General Physics and Astronomy,Nuclear and High Energy Physics

Reference24 articles.

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