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Two-Center Effect on Low-Energy Electron Emission in Collisions of 1-MeV/u Bare Ions with Atomic Hydrogen, Molecular Hydrogen, and Helium. I. Atomic Hydrogen

机译:1-meV / u裸离子与原子氢,分子氢和氦碰撞中低能电子发射的双中心效应。 I.原子氢

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摘要

We have investigated ionization mechanisms in fast ion-atom collisions by measuring the low-energy electron emission cross sections in a pure three-body collision involving bare carbon ions (v=6.35 a.u.) colliding with atomic hydrogen targets. The measurements have also been extended to molecular hydrogen and helium targets. In this paper we provide the energy and angular distributions of double differential cross sections of low-energy electron emission for atomic hydrogen targets. The Slevin rf source with a high degree of dissociation was used to produce the atomic H target. It is found that the two-center effect has a major influence on the observed large forward-backward angular asymmetry. A detailed comparison is presented with calculations based on the continuum distorted-wave (CDW) and CDW-EIS (eikonal initial-state) approximations. Both the continuum distorted-wave calculations provide a very good understanding of the data, whereas the first Born calculation predicts almost symmetric forward-backward distributions that do not agree with the data. The two-center effect is slightly better represented by the CDW calculations compared to the CDW-EIS calculation. The total cross sections are, however, in good agreement with the theories used. The results for molecular hydrogen and helium will be discussed in the following paper.
机译:我们通过测量纯三体碰撞中的低能电子发射截面来研究快速离子-原子碰撞中的电离机理,其中纯三体碰撞涉及裸碳离子(v = 6.35 a.u.)与原子氢靶碰撞。测量也已扩展到分子氢和氦靶。在本文中,我们为原子氢靶标提供了低能电子发射的双微分截面的能量和角度分布。具有高度解离度的Slevin rf源用于产生原子H目标。发现两中心效应对观察到的大的前后角度不对称性有重大影响。通过基于连续畸变波(CDW)和CDW-EIS(本征初始状态)近似的计算,给出了详细的比较。两种连续的扭曲波计算都提供了对数据的很好的理解,而第一个Born计算则预测了与数据不一致的几乎对称的前后分布。与CDW-EIS计算相比,CDW计算可以更好地表示两个中心效应。但是,总横截面与所使用的理论高度吻合。分子氢和氦的结果将在以下论文中讨论。

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