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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Extrapolation of the Bethe equation for electron stopping powers to intermediate and low electron energies by empirical simulation of target effective mean excitation energy and atomic number
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Extrapolation of the Bethe equation for electron stopping powers to intermediate and low electron energies by empirical simulation of target effective mean excitation energy and atomic number

机译:通过目标有效平均激发能和原子序数的经验模拟,将电子停止能力的贝特方程外推到中低电子能

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摘要

A series of simple stopping power (SP) formulas, modified from the relativistic Bethe equation, is presented that is based on the concepts of target effective atomic number and mean excitation energy (MEE). The analytical model function is constructed to approximate experimental or calculated SPs at low electron energies and tend asymptotically to the relativistic Bethe function at high energies. The energy dependencies of our effective values, in contrast with theoretical approaches, are defined empirically by parametrization with tuning parameters. A least-squares fitting routine based on the Leven-berg-Marquardt algorithm was developed. We utilize the material parameters and numerical calculations of SPs from optical data using the full Penn-algorithm. Our formula is thought to be applicable for energies above 60 eV. Our simulations of SPs for 41 elemental solids are found to be in good agreement with published numerical results. The flexibility of a general empirical formula is shown. Shortened formulas were developed that are applicable for particular energy ranges, and effective MEEs are proposed that differ from previously recommended values. The presented formulas may be used for analytical calculation of SPs over a broad projectile energy region.
机译:根据相对论的贝特(Bethe)方程,提出了一系列基于目标有效原子序数和平均激发能(MEE)的简单停止功率(SP)公式。分析模型函数构造为在低电子能量下近似于实验或计算的SP,并且在高能量下渐近趋于相对论的Bethe函数。与理论方法相反,我们有效值的能量依赖性是通过使用调整参数进行参数化以经验方式定义的。开发了基于Leven-berg-Marquardt算法的最小二乘拟合例程。我们使用完整的Penn算法从光学数据中利用SP的材料参数和数值计算。我们的公式被认为适用于60 eV以上的能量。我们对41种元素固体的SP的模拟与已发布的数值结果非常吻合。显示了一般经验公式的灵活性。已开发出适用于特定能量范围的简化公式,并提出了不同于先前推荐值的有效MEE。提出的公式可用于在较宽的弹丸能量区域内对SP进行分析计算。

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