Cross-sections for the \({^{27}\!\rm{Al}}(\gamma,\textit{x})^{24}\rm{Na}\) multiparticle reaction at \(E_{\rm{\gamma max}}\) = 40 \(\div\) 95 MeV

The bremsstrahlung flux-averaged cross-sections \(\langle{\sigma(E_{\rm{\gamma max}})}\rangle\) and the cross-sections per equivalent photon \(\langle{\sigma(E_{\rm{\gamma max}})_{\rm{Q}}}\rangle\) were measured for the photonuclear multiparticle reaction \(^{27}\!\rm{Al}(\gamma,\textit{x}; \textit{...

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Bibliographic Details
Published inarXiv.org
Main Authors Vodin, A N, Deiev, O S, Timchenko, I S, Olejnik, S N
Format Paper
LanguageEnglish
Published Ithaca Cornell University Library, arXiv.org 28.12.2020
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Summary:The bremsstrahlung flux-averaged cross-sections \(\langle{\sigma(E_{\rm{\gamma max}})}\rangle\) and the cross-sections per equivalent photon \(\langle{\sigma(E_{\rm{\gamma max}})_{\rm{Q}}}\rangle\) were measured for the photonuclear multiparticle reaction \(^{27}\!\rm{Al}(\gamma,\textit{x}; \textit{x} = {^{3}\rm{He}} + pd + 2pn)^{24}\rm{Na}\) at bremsstrahlung end-point energies ranging from 40 MeV to 95 MeV. The experiments were performed using the beam from the NSC KIPT electron linear accelerator LUE-40 with the use of the \(\gamma\)-activation technique. The bremsstrahlung quantum flux was calculated with the program GEANT4 and, in addition, was monitored by means of the \(^{100}\rm{Mo}(\gamma,n)^{99}\rm{Mo}\) reaction. The cross-sections \(\sigma(E)\) were computed using the TALYS1.9 code with the default options. The measured average cross-sections \(\langle{\sigma(E_{\rm{\gamma max}})}\rangle\) and \(\langle{\sigma(E_{\rm{\gamma max}})_{\rm{Q}}}\rangle\) have appeared to be higher by factors of 2.0 to 2.4 than the theoretical results. The experimental results have been found to be in good agreement with the data of other laboratories. Consideration is given to special features of calculation of \(\langle{\sigma(E_{\rm{\gamma max}})}\rangle\) and \(\langle{\sigma(E_{\rm{\gamma max}})_{\rm{Q}}}\rangle\) for the \(^{27}\!\rm{Al}(\gamma,\textit{x})^{24}\rm{Na}\) reaction, with occurrence of three \(^{27}\!\rm{Al}\) photodisintegration channels. The paper also discusses the possibility of using the \(^{27}\!\rm{Al}(\gamma,\textit{x})^{24}\rm{Na}\) reaction for monitoring the bremsstrahlung \(\gamma\)-quantum flux in the photon energy region above 30 MeV.
ISSN:2331-8422
DOI:10.48550/arxiv.2012.14475