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Cross Section Analysis for Neutron and Proton Induced Reactions on Mn-55 Material

机译:Mn-55材料上中子和质子诱导反应的截面分析

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摘要

Nuclear data on structural materials are an important tool in the safe and efficient design of nuclear fusion reactors. Manganese is an important material because of low activation property for fusion reactors. Thus, the manganese metal is commonly used as a key component of many important alloys. And also, it is considered as the shielding materials for nuclear fusion reactor. In the present paper, the excitation functions of neutron and proton induced reactions on fusion structural material Manganese have been calculated by using Hybrid, Geometry Dependent Hybrid and Weisskopf Ewing models. In addition, the different nuclear level density models were tested such as Fermi Gas model with an energy independent level density parameter, and Fermi Gas model of Ignatyuk, Smirenkin, Tishin with an energy dependent level density parameter, and Superfluid nuclear model, and Kataria-Ramamurthy Fermi Gas model. The obtained theoretical cross section calculations in the framework of these nuclear models have been compared with the each other and, the experimental data and TENDL-2014 library. Finally, it seemed that the nuclear cross section calculations are quite sensitive to level densities for nucleon induced reactions.
机译:结构材料的核数据是安全有效设计核聚变反应堆的重要工具。锰是一种重要的材料,因为它对聚变反应堆的活化性能低。因此,锰金属通常用作许多重要合金的关键成分。而且,它被认为是核聚变反应堆的屏蔽材料。本文利用混合,几何相关混合和Weisskopf尤因模型计算了中子和质子诱发的对融合结构材料锰的反应的激发函数。此外,还测试了不同的核能级密度模型,例如具有能量无关的能级密度参数的费米气体模型,具有能级的能级密度参数的Ignatyuk,Smirenkin,Tishin的费米气体模型,超流体核模型以及Kataria- Ramamurthy Fermi Gas模型。在这些核模型的框架内获得的理论截面计算已相互比较,并与实验数据和TENDL-2014库进行了比较。最后,似乎核截面的计算对核仁诱导反应的能级密度非常敏感。

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