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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Angular scattering in fast ion-atom electron transfer collisions: Projectile wave diffraction and Thomas mechanisms
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Angular scattering in fast ion-atom electron transfer collisions: Projectile wave diffraction and Thomas mechanisms

机译:快速离子-原子电子转移碰撞中的角散射:弹丸波衍射和托马斯机制

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摘要

We report experimental angular differential cross sections for double-electron capture in He~(2+) + He collisions and single-electron capture in H~+ + He collisions for the 1.3-12.5 MeV kinetic energy range. In all cases, the total cross sections are dominated by forward scattering peaks in dσ/dΩ. The shapes and widths (but not the magnitudes) of these peaks are very similar for all energies and for capture of one or two electrons corresponding also to our measured linear increases in the transverse momentum transfers with increasing projectile velocities. These observations may be ascribed to diffraction limitations which are connected to electron transfer probabilities P(b) which are significant in limited regions of b only. For the H~+ + He single-electron capture we observe two additional maxima in the angular differential cross sections. We conclude that while the secondary maxima at ~0.5 mrad probably have large contributions from the Thomas proton-electron-nucleus scattering mechanism, the third maxima at ~0.75 mrad are most likely mainly due to projectile de Broglie wave diffraction.
机译:我们报告了在1.3〜12.5 MeV动能范围内He〜(2+)+ He碰撞中双电子俘获和H〜+ + He碰撞中单电子俘获的实验角微分截面。在所有情况下,总横截面都以dσ/dΩ的前向散射峰为主。这些峰的形状和宽度(而不是大小)对于所有能量以及捕获一个或两个电子都非常相似,这也与我们测量到的横向动量传递随弹丸速度的线性增加相对应。这些观察结果可归因于衍射极限,该衍射极限与仅在b的有限区域中才有意义的电子转移概率P(b)有关。对于H〜+ + He单电子俘获,我们在角微分截面中观察到两个其他最大值。我们得出的结论是,尽管在〜0.5 mrad处的次要最大值可能是由Thomas质子-电子-核散射机制做出的巨大贡献,但在〜0.75 mrad处的第三个最大值最可能是由于抛射de Broglie波衍射引起的。

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