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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Charge transfer in keV proton collision with atomic oxygen:Differential and total cross sections
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Charge transfer in keV proton collision with atomic oxygen:Differential and total cross sections

机译:keV质子与原子氧碰撞中的电荷转移:微分截面和总截面

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摘要

Classical Trajectory Monte Carlo method (CTMC) with the modal interaction potential [1] has been used to simulate the differential, total and partial capture cross sections in proton-oxygen atom collisions in the energy range of 0.5–200 keV. An interesting feature of the calculated differential cross sections (DCS) curve below the scattering angle 0.1 is the presence of oscillations showing asymmetry in angular positions. The oscillations in the partial cross sections are explained in terms of swapping effect. The DCS and total cross sections are found to be in good agreement with the experimental as well as other theoretical results.
机译:具有模态相互作用势[1]的经典轨迹蒙特卡罗方法(CTMC)已用于模拟能量范围为0.5-200 keV的质子-氧原子碰撞中的微分,全部和部分俘获截面。在散射角0.1以下,计算出的微分截面(DCS)曲线的一个有趣特征是存在振动,这些振动在角度位置显示不对称。根据交换效应来说明部分横截面中的振荡。发现DCS和总横截面与实验以及其他理论结果非常吻合。

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