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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Ionization of helium by slow antiproton impact: Total and differential cross sections
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Ionization of helium by slow antiproton impact: Total and differential cross sections

机译:缓慢的反质子撞击使氦离子化:总截面和微分截面

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摘要

We investigate theoretically the single and double ionization of the He atom by antiproton impact for projectile energies ranging from 3 keV up to 1000 keV. We obtain accurate total cross sections by directly solving the fully correlated two-electron time-dependent Schrodinger equation. The cross sections are in excellent agreement with the available experimental data. We also present fully ab initio doubly differential data for single ionization at 10 and 100 keV impact energies and compare to classical-trajectory Monte Carlo calculations. In these differential cross sections we identify the binary-encounter peak along with the anticusp minimum. Furthermore, we also point out the importance of the postcollisional electron-projectile interaction at low antiproton energies, which significantly suppresses electron emission in the forward direction.
机译:我们从理论上研究了3 keV至1000 keV的弹丸能量通过反质子撞击对He原子的单电离和双电离。通过直接求解完全相关的两电子时间相关的薛定equation方程,我们可以获得准确的总横截面。横截面与可用的实验数据高度吻合。我们还提供了在10和100 keV冲击能量下单电离的完全从头算起的双微分数据,并将其与经典轨迹的蒙特卡洛计算进行了比较。在这些不同的横截面中,我们确定了二元相遇峰以及抗尖峰最小值。此外,我们还指出了在低质子能量下碰撞后电子-弹丸相互作用的重要性,它可以显着抑制正向电子的发射。

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