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Dependence of Fission-Fragment Properties On Excitation Energy For Neutron-Rich Actinides

机译:裂变片段特性对富含中子致动抗原的激发能量的依赖性

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Experimental access to full isotopic fragment distributions is very important to determine the features of the fission process. However, the isotopic identification of fission fragments has been, in the past, partial and scarce. A solution based on the use of inverse kinematics to study transfer-induced fission of exotic actinides was carried out at GANIL, resulting in the first experiment accessing the full identification of a collection of fissioning systems and their corresponding fission fragment distribution. In these experiments, a 238U beam at 6.14 AMeV impinged on a carbon target to produce fissioning systems from U to Am by transfer reactions, and Cf by fusion reactions. Isotopic fission yields of 250Cf, 244Cm, 240Pu, 239Np and 238U are presented in this work. With this information, the average number of neutrons as a function of the atomic number of the fragments is calculated, which reflects the impact of nuclear structure around Z=50, N=80 on the production of fission fragments. The characteristics of the Super Long, Standard I, Standard II, and Standard III fission channels were extracted from fits of the fragment yields for different ranges of excitation energy. The position and contribution of the fission channels as function of excitation energy are presented.
机译:对全同位素片段分布的实验性访问对于确定裂变过程的特征非常重要。然而,过去,部分和稀缺的裂变片段的同位素鉴定已经存在。在Ganil中进行了基于使用逆运动学进行研究转移诱导的异国散曲线裂变的解决方案,导致第一个试验,获得全面鉴定裂变系统的集合及其相应的裂变片段分布。在这些实验中,在6.14 Amev的238U梁,其撞击碳靶标以通过转移反应产生从U的裂变系统,并通过熔融反应产生CF。在这项工作中提出了250cf,244cm,240pu,239np和238u 244cm的同位素裂变产率。利用该信息,计算作为原子数的碎片的函数的平均中子数量,这反映了核结构周围Z = 50,n = 80的核结构对裂变片段的产生。超长,标准I,标准II和标准III裂变通道的特性从碎片产量的拟合中提取出不同的激发能量。介绍了裂变通道作为激发能量的功能的位置和贡献。

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