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Estimation of M1 scissors mode strength for deformed nuclei in the medium- to heavy-mass region by statistical Hauser-Feshbach model calculations

机译:估计统计HAUSER-Feshach模型计算介质核心变形核的M1剪刀模式强度

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摘要

Radiative neutron capture is an important nuclear reaction whose accurate description is needed for many applications ranging from nuclear technology to nuclear astrophysics. The description of such a process relies on the Hauser-Feshbach theory which requires the nuclear optical potential, level density, and gamma-strength function as model inputs. It has recently been suggested that the M1 scissors mode may explain discrepancies between theoretical calculations and evaluated data. We explore statistical model calculations with the strength of the M1 scissors mode estimated to be dependent on the nuclear deformation of the compound system. We show that the form of the M1 scissors mode improves the theoretical description of evaluated data and the match to experiment in both the fission product and actinide regions. Since the scissors mode occurs in the range of a few keV to a few MeV, it may also impact the neutron capture cross sections of neutron-rich nuclei that participate in the rapid neutron capture process of nucleosynthesis. We comment on the possible impact to nucleosynthesis by evaluating neutron capture rates for neutron-rich nuclei with the M1 scissors mode active.
机译:辐射中子捕获是一种重要的核反应,其许多应用从核技术到核天体物理学所需的准确描述。这种过程的描述依赖于Hauser-Feshbach理论,该理论需要核光学电位,水平密度和伽马强度功能作为模型输入。最近提出了M1剪刀模式可以解释理论计算和评估数据之间的差异。我们探讨了估计剪刀模式的强度依赖于复合体系的核变形的统计模型计算。我们表明M1剪刀模式的形式提高了评估数据的理论描述和裂变产品和散步区域的实验。由于剪刀模式发生在几杯到几个MEV的范围内,因此它也可能影响中子捕获的核心核,这些核的参与核酸的快速中子捕获过程。通过使用M1剪刀模式激活来评估中子捕获速率对中子捕获速率评估中子捕获速率的可能影响。

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