Investigation of Some Structural Fusion Materials for (n, 2n) Reactions up to 40 MeV

被引:0
|
作者
A. Arasoğlu
E. Tel
机构
[1] Yüzüncü Yıl University,Department of Physics, Faculty of Arts and Science
[2] Gazi University,Department of Physics, Faculty of Arts and Science
来源
Journal of Fusion Energy | 2010年 / 29卷
关键词
(; , 2; ) cross-section; Exciton model; Pre-equilibrium reactions; Excitation function; Empirical formulas;
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中图分类号
学科分类号
摘要
The knowledge of (n, 2n) cross section is very important and necessary in the reactor technology since a significant portion of the fission neutron spectrum lies above the threshold of (n, 2n) reaction for the most of the reactor materials. The (n, 2n) cross section is neutron multiplier reaction in fusion reactor design. Therefore, (n, 2n) reactions of the selected blanket materials can play a key role for multiplying neutrons in reactor environment. In this study, for some structural fusion materials (n, 2n) reactions such as 27Al(n, 2n)26Al,51V(n, 2n)50V,52Cr(n, 2n)51Cr,55Mn(n, 2n)54Mn,56Fe(n, 2n)55Fe and 58Ni (n, 2n)57Ni have been carried out up to 40 MeV incident neutron energy. In these calculations, the pre-equilibrium and equilibrium effects have been investigated. Also in the present work, the (n, 2n) reaction cross-sections have calculated by using evaluated empirical formulas developed by Tel et al. at 14–15 MeV energy. The calculated results are discussed and compared with the experimental data taken from EXFOR database.
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页码:347 / 352
页数:5
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