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Unexpected Higher-Order Effects in Charged Particle Impact Ionization at High Energies

机译:高能量下带电粒子碰撞电离的意外高阶效应

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Most of the experimental and theoretical studies of electron-impact ionization of atoms, referred to as (e, 2e), have concentrated on the scattering plane. The assumption has been that all the important physical effects will be observable in the scattering plane. However, very recently it has been shown that, for C~(6+)-helium ionization, experiment and theory are in nice agreement in the scattering plane and in very bad agreement out of the scattering plane. This lack of agreement between experiment and theory has been explained in terms of higher-order scattering effects between the projectile and target ion. We have examined electron-impact ionization of magnesium and have observed similar higher-order effects. The results of the electron-impact ionization of magnesium indicate the possible deficiencies in the calculation of fully differential cross sections in previous heavy particle ionization work.
机译:原子的电子碰撞电离的大部分实验和理论研究都集中在散射平面上。假设所有重要的物理效应在散射平面中都可以观察到。然而,最近已经表明,对于C〜(6 +)-氦离子化,实验和理论在散射平面上是很好的一致,而在散射平面之外是很差的一致。实验和理论之间缺乏一致性的问题已经从弹丸和目标离子之间的高阶散射效应方面进行了解释。我们已经研究了镁的电子碰撞电离,并观察到了类似的高阶效应。镁的电子轰击电离的结果表明,在以前的重粒子电离工作中,在计算完全微分的截面时可能存在缺陷。

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