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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Electron loss from hydrogenlike, heliumlike, and lithiumlike uranium ions in collisions with atoms at low relativistic impact energies
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Electron loss from hydrogenlike, heliumlike, and lithiumlike uranium ions in collisions with atoms at low relativistic impact energies

机译:在相对论冲击能较低的情况下,与氢原子碰撞的类氢,类氦和类锂铀离子中的电子损失

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摘要

We consider the (single) electron loss from hydrogenlike, heliumlike, and lithiumlike uranium ions in collisions with neutral atoms in the domain of the low-relativistic impact energies where the collision velocity is already a substantial fraction of the speed of light but still does not exceed the typical electron velocities in the K shell of the uranium ions. In collisions with many-electron atoms at these impact energies the presence of the atomic electrons is of minor importance for the electron loss process which occurs predominantly via the interaction with the unscreened atomic nucleus. This interaction can be effectively very strong if the atoms have large atomic numbers which leads to a tremendous failure of the first Born approximation. We show that experimental data for the loss cross sections can be well described using an eikonal amplitude proposed recently.
机译:我们认为低相对论冲击能域中的中性原子与氢,氦,锂类似铀离子的碰撞(单次)电子损失,其中碰撞速度已经是光速的很大一部分,但仍然没有超过了铀离子K壳中的典型电子速度。在这些冲击能量下与多电子原子发生碰撞时,原子电子的存在对于电子损失过程的重要性不高,该过程主要是通过与未经筛选的原子核相互作用而发生的。如果原子具有大原子序数,则这种相互作用会非常有效,这会导致第一个Born近似极大地失败。我们表明,使用最近提出的有效振幅可以很好地描述损耗截面的实验数据。

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