The role of electron capture and energy exchange of positively charged particles passing through matter

W. Ulmer
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引用次数: 6

Abstract

The conventional treatment of the Bethe-Bloch equation for protons accounts for electron capture at the end of the projectile track by the small Barkas correction. This is only a possible way for protons, whereas for light and heavier charged nuclei the exchange of energy and charge along the track has to be accounted for by regarding the projectile charge q as a function of the residual energy. This leads to a significant modification of the Bethe-Bloch equation, otherwise the range in a medium is incorrectly determined. The LET in the Bragg peak domain and distal end is significantly influenced by the electron capture. A rather significant result is that in the domain of the Bragg peak the superiority of carbon ions is reduced compared to protons.
正电荷粒子通过物质时的电子捕获和能量交换作用
质子的贝特-布洛赫方程的传统处理方法是通过小的巴克斯校正来解释抛射轨迹末端的电子捕获。这只是质子的一种可能方式,而对于轻的和重的带电原子核,沿着轨道的能量和电荷交换必须通过将抛射电荷q作为剩余能量的函数来解释。这将导致对贝特-布洛赫方程的重大修改,否则将错误地确定介质中的范围。在布拉格峰域和远端LET受到电子捕获的显著影响。一个相当重要的结果是,在布拉格峰域中,碳离子的优越性与质子相比降低了。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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