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Review of theories on double electron capture in fast ion-atom collisions

机译:快速离子-原子碰撞中双电子俘获的理论综述

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This work reviews quantum-mechanical four-body distorted wave theories for double electron capture in collisions between fast heavy multiply charged ions and heliumlike atomic systems. The widely used distorted wave methods of the first- and second-order in the pertinent perturbation series expansions are compared with each other. This tests the presumed importance of double continuum intermediate states of two electrons. Further, the relative performance is evaluated of the second-order theories with and without the eikonalization of the two-electron Coulomb wave functions for double continuum intermediate states. This checks the correctness and usefulness of the eikonalized Coulomb waves when two electrons participate actively to the transition from the initial to the final state of the entire system. We also analyze the significance of the contributions from excited heliumlike states especially in comparison between theory and measurement. The overall goal of the present study is to determine how much of the unprecedented experience gained over several decades in studying high-energy theories of pure three-body charge exchange could be exported directly to four-body double-electron capture without much of additional and essential eleaborations, besides the naturally increased computational demand. In particular, we address the unexpected breakdown of the continuum distorted wave eikonal initial state approximation and the anticipated success of continuum distorted wave theory for double charge exchange in ion-atom collisions at high impact energies.
机译:这项工作回顾了量子力学的四体畸变波理论,用于在快速重的多重电荷离子与氦原子原子系统之间的碰撞中捕获双电子。将相关扰动级数展开中的一阶和二阶失真波方法进行了比较。这测试了两个电子的双连续中间态的假定重要性。此外,对于具有两个连续连续中间态的双电子库仑波函数进行电子化和不进行电子化的情况,对二阶理论的相对性能进行了评估。当两个电子积极参与整个系统从初始状态到最终状态的跃迁时,这将检查电子化库仑波的正确性和有用性。我们还分析了激发氦样态贡献的重要性,特别是在理论与测量之间的比较中。本研究的总体目标是确定几十年来在研究纯三体电荷交换高能理论中获得的前所未有的经验中的多少可以直接输出到四体双电子俘获中,而无需付出太多额外的费用。除了自然地增加的计算需求外,还需要一些基本要素。特别是,我们解决了连续畸变波真实初始状态近似的意外崩溃,以及在高冲击能量下离子-原子碰撞中双电荷交换的连续畸变波理论的预期成功。

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