低能Li(+) + He碰撞中自电离产生的电子能谱

A. Yagishita, K. Wakiya, T. Takayanagi, Harukazu Suzuki, F. Koike, S. Ohtani
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引用次数: 15

摘要

从氦的双激发态发射电子的光谱已经在几个观测角度广泛测量了锂离子在低于5 keV的能量下的冲击。在正向观测角度下发现了“分子自电离”光谱,并根据格伯-尼豪斯理论进行了修正分析。讨论了原子自电离峰的光谱形状与巴克-贝里效应和多普勒效应的关系。用离子和电子同时撞击的新方法测定了自电离态的激发截面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electron spectra resulting from autoionization in low-energy Li(+) + He collisions
Spectra of electrons ejected from doubly excited states of helium have been extensively measured at several observation angles for impact of lithium ions at energies lower than 5 keV. ''Molecular-autoionization'' spectra have been found at forward observation angles, and analyzed in terms of the Gerber-Niehaus theory with modification. The spectral shapes of atomic-autoionization peaks have been discussed in relation to both the Barker-Berry effect and the Doppler effect. Excitation cross sections of autoionizing states have been determined by a new method that uses simultaneous impact of ions and electrons.
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