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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Experimental study and Monte Carlo simulation of the correlation between electron emission and stopping power for swift proton impact on amorphous carbon target
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Experimental study and Monte Carlo simulation of the correlation between electron emission and stopping power for swift proton impact on amorphous carbon target

机译:质子快速撞击非晶碳靶的电子发射与停止功率相关性的实验研究和蒙特卡洛模拟

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摘要

It is usually well accepted that for swift protons, the induced backward and forward electron emission yield is proportional to the projectile electronic stopping power. This was observed in particular for thin amorphous carbon foils. However, this law was established from a non extensive set of experimental data and somewhat confirmed by rough macroscopic theories. We then developed a standard Monte Carlo simulation to predict the yield dependence on proton energy [0.5-10 MeV] and for a wide range of foil thickness. After evaluating the reliability of this simulation, we showed and explained why the law of proportionality cannot generally hold for forward electron emission. In particular, the ratio between forward yield and stopping power generally depends on foil thickness and proton energy. We performed a new experiment that confirmed our theoretical predictions.
机译:通常公认的是,对于快速质子,感应的向前和向后电子发射量与射弹的电子阻止能力成正比。尤其对于薄的无定形碳箔观察到了这一点。但是,该定律是从一组不广泛的实验数据中建立的,并得到了粗略的宏观理论的证实。然后,我们开发了标准的蒙特卡洛模拟,以预测产量对质子能量[0.5-10 MeV]的依赖性以及箔厚度的广泛范围。在评估了此模拟的可靠性之后,我们展示并解释了为什么比例律通常不能适用于正向电子发射。特别地,正向屈服和停止能力之间的比率通常取决于箔的厚度和质子能量。我们进行了一项新实验,证实了我们的理论预测。

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