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首页> 外文期刊>Annals of nuclear energy >Simulation of optical model covariance parameters with reduced uncertainty using representativity factor approach
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Simulation of optical model covariance parameters with reduced uncertainty using representativity factor approach

机译:使用代表性因子方法模拟具有降低的不确定性的光学模型协方差参数

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Neutron cross-section and their covariance at higher energies are generated by nuclear model parameters. The model based covariance exhibit a large systematic errors as compared to experimentally generated covariance. In the absence of probability distribution for the systematic errors, we propose the representativity factor approach to minimize these errors by simulating the upper and lower bounds by the Technique of Determinant Inequalities developed by us. We demonstrate the utility of our approach in simulating optical model covariance parameters for fluorine with reduced systematic errors.
机译:中子截面及其在较高能量下的协方差由核模型参数生成。与实验产生的协方差相比,基于模型的协方差表现出较大的系统误差。在没有系统误差的概率分布的情况下,我们提出了一种代表性因子方法,通过我们开发的行列式不等式技术来模拟上下限,从而将这些误差降至最低。我们证明了我们的方法在模拟光学模型协方差参数以减少系统误差时的效用。

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