Doubly differential cross sections for ionization in proton collisions with atomic hydrogen: Energy and angular distribution of emitted electrons

IF 2.9 2区 物理与天体物理 Q2 Physics and Astronomy Physical Review A Pub Date : 2024-08-06 DOI:10.1103/physreva.110.022804
C. T. Plowman, K. H. Spicer, N. W. Antonio, M. S. Schöffler, M. Schulz, I. Bray, A. S. Kadyrov
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Abstract

We use the two-center wave-packet convergent close-coupling approach to ion-atom collisions to calculate the energy and angular distribution of electrons emitted in proton collisions with atomic hydrogen. Results are provided across a wide range of intermediate energies where many competing reaction channels make calculations challenging. The present data consistently agree with the available experimental measurements and improve upon previously available results based on perturbative and classical methods. Furthermore, we extend the range of electron angles and energies over which theoretical data are available for the doubly differential cross section for ionization. This provides strong evidence that at the level of doubly differential cross sections nonperturbative high-order methods are required to accurately model the ionization process.

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质子与原子氢碰撞电离的双差分截面:发射电子的能量和角分布
我们使用离子-原子碰撞的双中心波包收敛紧密耦合方法,计算质子与原子氢碰撞中发射的电子的能量和角度分布。研究提供了广泛的中间能量范围内的结果,在这些能量范围内,许多相互竞争的反应通道使得计算具有挑战性。目前的数据与现有的实验测量结果一致,并改进了之前基于微扰和经典方法得出的结果。此外,我们还扩展了电子角和能量的范围,在这些范围内,电离的双差分截面理论数据是可用的。这有力地证明,在双微分截面水平上,需要非微扰高阶方法来精确模拟电离过程。
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来源期刊
Physical Review A
Physical Review A 物理-光学
CiteScore
5.40
自引率
24.10%
发文量
0
审稿时长
2.2 months
期刊介绍: Physical Review A (PRA) publishes important developments in the rapidly evolving areas of atomic, molecular, and optical (AMO) physics, quantum information, and related fundamental concepts. PRA covers atomic, molecular, and optical physics, foundations of quantum mechanics, and quantum information, including: -Fundamental concepts -Quantum information -Atomic and molecular structure and dynamics; high-precision measurement -Atomic and molecular collisions and interactions -Atomic and molecular processes in external fields, including interactions with strong fields and short pulses -Matter waves and collective properties of cold atoms and molecules -Quantum optics, physics of lasers, nonlinear optics, and classical optics
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