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Assessing theoretical uncertainties in fission barriers of superheavy nuclei

机译:评估超核核障碍的理论不确定性

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Theoretical uncertainties in the predictions of inner fission barrier heights in superheavy elements have been investigated in a systematic way for a set of state-of-the-art covariant energy density functionals which represent major classes of the functionals used in covariant density functional theory. They differ in basic model assumptions and fitting protocols. Both systematic and statistical uncertainties have been quantified where the former turn out to be larger. Systematic uncertainties are substantial in superheavy elements and their behavior as a function of proton and neutron numbers contains a large random component. The benchmarking of the functionals to the experimental data on fission barriers in the actinides allows reduction of the systematic theoretical uncertainties for the inner fission barriers of unknown superheavy elements. However, even then, on average they increase on moving away from the region where benchmarking has been performed. In addition, a comparison with the results of nonrelativistic approaches is performed in order to define full systematic theoretical uncertainties over the state-of-the-art models. Even for the models benchmarked in the actinides, the difference in the inner fission barrier height of some superheavy elements reaches 5–6 MeV. This uncertainty in the fission barrier heights will translate into huge (many tens of the orders of magnitude) uncertainties in the spontaneous fission half-lives.
机译:以系统的方式研究了超弱元件中的内裂解屏障高度预测的理论不确定性,用于一组最先进的协调能量密度函数,该能量密度函数代表了用于协助密度泛函理论的主要类别的主要类别。它们的基本模型假设和拟合协议不同。系统和统计的不确定性都已量化,前者变大。系统的不确定因素在过度元素中具有重要性,以及它们作为质子和中子数的函数的行为含有大的随机组分。该功能对裂变障碍物的实验数据的基准测试允许降低未知过度元素的内部裂变屏障的系统理论不确定性。然而,即使,即使,平均而言,它们也会增加远离已经进行了基准测试的区域。另外,与非素描方法的结果进行比较,以便在最先进的模型上定义完全系统的理论不确定性。即使对于在缺散物中基准测试的模型,一些过度元素的内部裂变势垒高度的差异也达到5-6米。裂变屏障高度的这种不确定性将转化为自发裂变中的巨大(数量数量数量)的不确定性。

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  • 来源
    《Physical Review C》 |2017年第2017期|054324.1-054324.17|共17页
  • 作者单位

    Department of Physics and Astronomy Mississippi State University Mississippi 39762 USA;

    Department of Physics and Astronomy Mississippi State University Mississippi 39762 USA;

    Department of Physics and Astronomy Mississippi State University Mississippi 39762 USA;

    Fakultaet fuer Physik Technische Universitaet Muenchen D-85748 Garching Germany;

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