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J. D. Shcherbina

Publications and source records attributed to J. D. Shcherbina.

3 recordsLinked to original sources

Evaluation of Phenomenological Characteristics of the Two-Proton Decay of the 45Fe Nucleus

A Green-function formalism describing sequential and virtual two-proton (2p) radi-oactivity is developed on the basis of the multiparticle theory of one-proton decay. In the proposed approach, two-proton emission is treated as two consecutive one-proton transitions connected by the Green's function of the intermediate nucleus, al-lowing both on-shell and off-shell intermediate states to be consistently included. Analytical expressions are derived for the total and partial 2p-decay widths as well as for the angular distribution of the emitted protons. The formalism is applied to the ground-state two-proton decay of 45Fe leading to the ground state of 43Cr within the superfluid nuclear model. Calculations demonstrate a pronounced dependence of the decay characteristics on the choice of the single-particle nuclear potential. It is shown that an appropriate choice of the shell potential allows the experimental decay width and the measured proton angular distribution to be reproduced simultaneously. These results indicate that the proposed Green-function approach provides a consistent description of virtual sequential two-proton decay and offers an alternative framework for the interpretation of true two-proton radioactivity.

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Evaluation of the Moments of Inertia of Forced Split Fragments for Nuclei 232Th(n,f) and 238U(n,f)

This paper discusses modern methods for estimating the moments of inertia of fragments formed during forced fission of the isotopes 232Th(n,f) and 238U(n,f). The study analyzes two fundamental approaches -- statistical and microscopic. Special attention is given to their implementation within both classical and superfluid models, enabling a more detailed description of nuclear dynamics during fission. Various physical factors influencing the calculation of moments of inertia are examined, including transverse vibrational modes and nucleon exchange mechanisms. These effects significantly impact spin distributions and the interpretation of experimental data. The analysis also addresses the role of nuclear models that vary with fragment deformation, allowing key regularities in internal structure to be identified. Emphasis is placed on comparing theoretical predictions with experimental results, which remain essential for model validation. This approach not only deepens understanding of fission mechanisms but also supports the broader study of fundamental nuclear properties.

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Evaluation of fission fragment moments of inertia for spontaneous fission of Cf-252

Current work discusses methods for estimating the moments of inertia of fission fragments for spontaneous fission of the isotope Cf-252, in particular, two main approaches are mentioned: statistical and microscopic. In addition, the methods of the classical and superfluid approaches to the calculation of the moments of inertia are discussed, as well as their application to different models of nuclei. Within this framework, the influence of different oscillation modes and nucleon exchange on the moments of inertia and spin distributions of fission fragments is evaluated. The authors emphasizes the need for a comparative analysis of theoretical predictions with experimental data for a deeper understanding of the internal structure of nuclei and fission mechanisms.

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