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A critical overview of recent stopping power programs for positive ions in solid elements

机译:关于固体元素中正离子的最新停止功率程序的重要概述

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摘要

Several tables exist in the literature containing stopping power data for different targets and projectile ions. Moreover, Monte Carlo transport codes often incorporate their own implementation of electronic stopping power. In this article, we compare recent stopping power publications to our large collection of experimental stopping data for positive ions, in order to test their validity. We consider stopping codes by Barbui et al., Javanainen, and Diwan et al., and also the stopping power descriptions built into Monte Carlo transport codes: "Bethe" in libdEdx/SHIELD-HIT, Geant4-DNA, FLUKA, and MNCPX. We use graphical comparisons for significant single ion/target combinations, and we use our statistical program "Judge" to analyse larger data sets for those ions and targets where many experimental results are available. Only solid elemental targets are considered. The performance of the codes is evaluated in terms of how well they describe the available experimental data, in comparison with previously analyzed programs. Although interesting new approaches have been used in some of the codes, both SRIM and MSTAR still seem to be slightly better at reproducing the available data.
机译:文献中存在一些表格,其中包含针对不同目标和射弹离子的停止功率数据。此外,蒙特卡洛运输代码通常包含其自身的电子制动力的实现。在本文中,我们将最近的停止功率出版物与我们收集的大量正离子实验停止数据进行比较,以测试其有效性。我们考虑Barbui等人,Javanainen和Diwan等人的停止代码,以及内置在蒙特卡洛传输代码中的停止能力描述:libdEdx / SHIELD-HIT,Geant4-DNA,FLUKA和MNCPX中的“ Bethe”。我们对重要的单个离子/目标组合使用图形比较,并使用统计程序“ Judge”来分析可提供许多实验结果的那些离子和目标的较大数据集。仅考虑固体元素目标。与以前分析过的程序相比,根据代码对现有实验数据的描述程度来评估代码的性能。尽管在某些代码中使用了有趣的新方法,但SRIM和MSTAR在再现可用数据方面似乎仍然略胜一筹。

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