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Validation of the MCNP6 electron-photon transport algorithm: multiple-scattering of 13- and 20-MeV electrons in thin foils

机译:验证MCNP6电子-光子传输算法:薄膜中13-MeV和20-MeV电子的多重散射

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This paper presents a validation test comparing angular distributions from an electron multiple-scattering experiment with those generated using the MCNP6 Monte Carlo code system. In this experiment, a 13- and 20-MeV electron pencil beam is deflected by thin foils with atomic numbers from 4 to 79. To determine the angular distribution, the fluence is measured down range of the scattering foil at various radii orthogonal to the beam line. The characteristic angle (the angle for which the max of the distribution is reduced by 1/e) is then determined from the angular distribution and compared with experiment. Multiple scattering foils tested herein include beryllium, carbon, aluminum, copper, and gold. For the default electron-photon transport settings, the calculated characteristic angle was statistically distinguishable from measurement and generally broader than the measured distributions. The average relative difference ranged from 5.8% to 12.2% over all of the foils, source energies, and physics settings tested. This validation illuminated a deficiency in the computation of the underlying angular distributions that is well understood. As a result, code enhancements were made to stabilize the angular distributions in the presence of very small substeps. However, the enhancement only marginally improved results indicating that additional algorithmic details should be studied.
机译:本文提出了一项验证测试,该测试将来自电子多重散射实验的角分布与使用MCNP6蒙特卡洛编码系统生成的角分布进行了比较。在该实验中,原子序数为4到79的薄箔将13MeV和20MeV电子笔束偏转。为确定角度分布,在与离子束正交的各种半径下,测量了散射箔在向下范围内的注量。线。然后根据角度分布确定特征角度(最大分布减小1 / e的角度)并与实验进行比较。本文测试的多个散射箔包括铍,碳,铝,铜和金。对于默认的电子-光子传输设置,计算出的特征角在统计上可与测量区分开,并且通常比测量的分布宽。在测试的所有箔片,源能量和物理设置上,平均相对差异范围为5.8%至12.2%。该验证阐明了众所周知的基础角度分布计算的不足。结果,在存在非常小的子步骤的情况下,对代码进行了增强以稳定角度分布。但是,此增强仅略微改善了结果,表明应研究其他算法细节。

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