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Modeling of High-Precision Neutron Nonelastic Cross Sections

机译:高精度中子非弹性截面的建模

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A new method has been applied to the determination of neutron nonelastic cross sections for iron ~(56)Fe and lead ~(208)Pbfor energies between 5 and 26 MeV. These data have estimated errors of only a few percent and do not suffer from the ambiguities encountered in earlier nonelastic data. We attempt to fit these high-precision data using both a semiclassical single phase shift model (nuclear Ramsauer model) as well as a recent global optical model that well reproduces a wide body of neutron scattering observ-ables. At the 5% uncertainty level, both models produce satisfactory fits. However, neither model gives satisfactory fits to these new precise data. We conclude that fitting precise data, i.e., data with errors of ~2% or less, may require a nuclear mass dependence of radii that reflects structure effects such as shell closures.
机译:一种新的方法已经应用于测定铁〜(56)Fe和铅〜(208)Pb的能量在5和26 MeV之间的中子非弹性截面。这些数据的估计误差仅为百分之几,并且不会遭受早期非弹性数据遇到的歧义。我们尝试使用半经典的单相移模型(核Ramsauer模型)以及最新的全局光学模型来拟合这些高精度数据,该模型可以很好地再现大范围的中子散射可观测物。在5%的不确定性水平上,两个模型均产生令人满意的拟合。但是,这两个模型都不能令人满意地拟合这些新的精确数据。我们得出的结论是,拟合精确的数据(即误差小于或等于2%的数据)可能需要半径的核质量依赖性,以反映诸如壳封闭之类的结构效应。

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