Properties of isoscalar giant multipole resonances in medium-heavy closed-shell nuclei: A semimicroscopic description
M. L. Gorelik, S. Shlomo, B. A. Tulupov, M. H. Urin
Abstract
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M. L. Gorelik, S. Shlomo, B. A. Tulupov, M. H. Urin
Abstract
Open-access reader
The semimicroscopic particle-hole dispersive optical model is adopted for a description of main properties of isoscalar giant multipole resonances (up to $L=3$) in medium-heavy closed-shell nuclei. The main properties are characterized by the strength distribution, transition density, and partial and total probabilities of direct one-nucleon decay. The model is implemented to describe characteristics of the mentioned resonances in the $^{208}\mathrm{Pb}$ nucleus, taken as an example. Calculation results are compared with available experimental data.
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The semimicroscopic particle-hole dispersive optical model is adopted for a description of main properties of isoscalar giant multipole resonances (up to $L=3$) in medium-heavy closed-shell nuclei. The main properties are characterized by the strength distribution, transition density, and partial and total probabilities of direct one-nucleon decay. The model is implemented to describe characteristics of the mentioned resonances in the $^{208}\mathrm{Pb}$ nucleus, taken as an example. Calculation results are compared with available experimental data.
Key concepts: Isoscalar, Multipole expansion, Physics, Shell (structure), Giant resonance, SHELL model, Nucleus, Atomic physics