Study of nuclear reaction cross-sections on natural scandium at a proton beam energy of 160MeV.

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Bibliographic Details
Title: Study of nuclear reaction cross-sections on natural scandium at a proton beam energy of 160MeV.
Authors: Zheltonozhskaya, Marina V.1 (AUTHOR) zhelton@yandex.ru, Adoniev, Stepan R.1 (AUTHOR) stepan1018@mail.ru, Smakotin, Alexandr A.1 (AUTHOR) smakotin.aa22@physics.msu.ru, Budanov, Mikhail V.1 (AUTHOR) budanov.mv18@gmail.com, Chernyaev, Alexandr P.1 (AUTHOR) a.p.chernyaev@yandex.ru, Shemyakov, Alexandr E.2 (AUTHOR) alshemyakov@yandex.ru, Akulinichev, Sergey V.3 (AUTHOR) akulinic@inr.ru
Source: International Journal of Modern Physics E: Nuclear Physics. May2026, Vol. 35 Issue 5, p1-6. 6p.
Subject Terms: *Nuclear cross sections, *Scandium, *Proton beams, *Nuclear activation analysis, *Nuclear models
Abstract: The paper presents the results of a study of proton-induced reaction cross-sections on natural scandium targets using the activation method. New experimental data concerning reaction cross-sections was obtained for a proton energy of 160 MeV. Cross-sections of (p, XpYn) reactions were measured for nuclei with a half-life greater than 30 min. Theoretical estimates of reaction cross-sections were made within the framework of the statistical model of the nucleus using the TALYS1.96 program code and the INCL intranuclear cascade model. It has been demonstrated that the intranuclear cascade model provides a satisfactory description of all experimental results. Conversely, calculations performed using the TALYS1.96 software code yield underestimated results. [ABSTRACT FROM AUTHOR]
Database: Energy & Power Source
Description
Abstract:The paper presents the results of a study of proton-induced reaction cross-sections on natural scandium targets using the activation method. New experimental data concerning reaction cross-sections was obtained for a proton energy of 160 MeV. Cross-sections of (p, XpYn) reactions were measured for nuclei with a half-life greater than 30 min. Theoretical estimates of reaction cross-sections were made within the framework of the statistical model of the nucleus using the TALYS1.96 program code and the INCL intranuclear cascade model. It has been demonstrated that the intranuclear cascade model provides a satisfactory description of all experimental results. Conversely, calculations performed using the TALYS1.96 software code yield underestimated results. [ABSTRACT FROM AUTHOR]
ISSN:02183013
DOI:10.1142/S0218301326410053