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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Competing processes for electron capture to continuum in relativistic ion-atom collisions
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Competing processes for electron capture to continuum in relativistic ion-atom collisions

机译:相对论性离子-原子碰撞中电子捕获到连续体的竞争过程

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摘要

The relative importance of the two mechanisms for the capture of a target electron by a fast, heavy projectile, radiative ionization (RI) and Coulomb capture to continuum (ECC), is studied in the vicinity of the forward peak. For both processes a consistent relativistic description, based on the impulse approximation, is provided. It is found that the di. erential cross-sections scale with the projectile charge and exhibit a common velocity dependence. As a result, RI starts to dominate over ECC near the same impact energy (similar to 11 MeV/ amu) for arbitrary bare projectiles colliding with hydrogen. For electrons from the inner shells of heavier targets this energy increases, however, which is con. rmed by a coincidence experiment on 90 MeV/amu U88+ + N-2.
机译:在正向峰附近研究了通过快速,重弹丸,辐射电离(RI)和库仑捕获到连续谱(ECC)捕获目标电子的两种机制的相对重要性。对于这两个过程,都提供了基于脉冲逼近的一致相对论描述。发现迪。截面的大小与射弹装药量成比例,并且表现出共同的速度依赖性。结果,对于任意裸射弹与氢碰撞,RI在相同的冲击能量(接近11 MeV / amu)附近开始超过ECC。对于来自较重目标的内壳的电子,此能量增加,但是这是不利的。通过巧合实验对90 MeV / amu U88 + + N-2进行鉴定。

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