arXiv · 1705.10578
The potential for $α$ induced nuclear scattering, reaction and decay, and a resonance-pole-decay model with exact explicit analytical solutions
Abstract
The decay of $α$ particle from a nucleus is viewed as a quantum resonance state of a two-body scattering process of the $α$+daughter nucleus pair governed by a novel nucleus-nucleus potential in squared Woods-Saxon form. By the application of the rigorous optical model (OM) potential scattering (S-matrix) theory the genuineness of the potential for the system is established by giving good explanation of the elastic scattering and reaction cross sections data of the $α$+nucleus pair. From the pole position in the complex momentum (k) plane of the S-matrix defined above, the energy and width of the resonance state akin to the decaying state of emission of $α$ particle are extracted and from this width, the result of $α$-decay half-life is derived to account for the experimental result of half-life in the cases of large number of $α$-emitters including heavy and super-heavy nuclei. The S-matrix of the full OM calculation above is replaced by an analytical function expressed in terms of exact Schrödinger solutions of a global potential that closely represents the Coulomb-nuclear interaction in the interior and the pure Coulomb wave functions outside, and the resonant poles of this S-matrix in the complex momentum plane are used to give satisfactory results of decay half-lives of $α$ coming out from varieties of nuclei.
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Basudeb Sahu, Swagatika Bhoi. 2017-05-30. The potential for $α$ induced nuclear scattering, reaction and decay, and a resonance-pole-decay model with exact explicit analytical solutions. https://doi.org/10.1103/physrevc.96.044602
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