Integrated Modeling of Natural Tin Photoactivation

C. Oprea, A. Mihul, Alexandru Ioan Oprea
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Abstract

In this study photoactivation reaction cross-sections on natural Sn were evaluated in the GDR region for incident neutron energy up to some ten’s of MeV’s. For each Sn isotope, the contribution of the compound, direct and preequilibrium mechanisms were extracted. The cross-sections and isomer ratios were calculated. The results are compared with existing experimental data obtained by Bremsstrahlung source and activation methods. Theoretical evaluations of the photoactivation cross-sections obtained with Talys are in good agreement with existing experimental data. Taking into account the satisfactory description of experimental cross-section data, the isomer ratios for incident photons energy from the neutron threshold (8¸9 MeV) up to 36 MeV were calculated. If the isomer nuclei are obtained in final states then the isomer ratios were evaluated using the corresponding production cross-sections (sm, sg) in the exclusive (g, 1n) reactions. In the present work, the results of (g, n) reaction on 114Sn and 120Sn nuclei are analyzed.
天然锡光活化的集成建模
在本研究中,在GDR区域对天然锡的光活化反应截面进行了评估,入射中子能量高达10兆电子伏特。对于每种Sn同位素,提取了化合物、直接和预平衡机制的贡献。计算了截面和异构体比。结果与现有的轫致辐射源和活化方法得到的实验数据进行了比较。用Talys得到的光活化截面的理论评价与现有的实验数据吻合得很好。考虑到实验截面数据的满意描述,计算了从中子阈值(89,mev)到36mev的入射光子能量的同分异构体比。如果在终态得到了同分异构体原子核,则用排异反应(g, 1n)中相应的生产截面(sm, sg)来评估同分异构体的比率。本文分析了(g, n)在114Sn和120Sn核上的反应结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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