Lomonosov Moscow State University, Russian Federation.
Lomonosov Moscow State University, Russian Federation.
Appl Radiat Isot. 2023 Sep;199:110871. doi: 10.1016/j.apradiso.2023.110871. Epub 2023 May 25.
Photonuclear reactions with the emission of protons and alpha particles have been little studied experimentally since their cross-sections are much smaller than those of the (γ, n) channel due to the Coulomb barrier. However, the study of such reactions is of great applied interest to producing medical isotopes. Besides, experimental data on photonuclear reactions with the emission of charged particles for nuclei with Z = 40, 41, 42 open up great opportunities for learning the role of magic numbers. In the presented article, we obtained the weighted average yields of (γ, αn)-reactions for natural zirconium, niobium, and molybdenum at bremsstrahlung γ-quanta of 20 MeV boundary energy for the first time. A significant effect of a closed N = 50 shell was established on the reaction yield with the emission of alpha particles. Our research shows that the semi-direct mechanism for (γ, αn) reactions dominates in the energy range below the Coulomb barrier. As a result, we can note the prospects of applying (γ, αn)-reaction on Mo to produce the Zr promise medical radionuclide isotope using electron accelerators.
光子核反应伴随着质子和阿尔法粒子的发射,由于库仑势垒的存在,其截面比(γ,n)通道小得多,因此实验上对其研究较少。然而,这种反应的研究对于生产医用同位素具有重要的应用价值。此外,对于 Z=40、41、42 核的带电粒子发射的光子核反应的实验数据为了解魔数的作用提供了巨大的机会。在本文中,我们首次获得了 20MeV 边界能量的韧致辐射γ量子下天然锆、铌和钼的(γ,αn)反应的加权平均产额。发现了闭合 N=50 壳层对发射阿尔法粒子的反应产额的显著影响。我们的研究表明,在低于库仑势垒的能量范围内,(γ,αn)反应的半直接机制占主导地位。因此,可以注意到在电子加速器上应用(γ,αn)反应在 Mo 上生产 Zr 前景可期的医用放射性核素同位素的前景。