Electron impact excitation of the , , and states of CO at 10.0, 12.5 and 15.0 eV impact energies

P. Zetner, I. Kanik, S. Trajmar
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引用次数: 23

Abstract

We have measured the differential and integral cross sections for electron impact excitation of the , , and states of CO in the 10-15 eV impact energy region. These measurements fill the gap which existed between the low-energy (threshold to about 12 eV) data of Zobel et al and the intermediate energy (20-50 eV) results of Middleton et al. Recent electron time-of-flight measurements are utilized to place the relative cross sections (deduced from energy-loss spectra) on the absolute scale. The cross sections are in excellent agreement with the results obtained by Zobel et al at the overlapping impact energies and always smoothly extrapolate to their low-energy results. Extrapolation to the intermediate energy domain and comparison with the results of Middleton et al is not so clear. Comparison with theoretical differential and integral cross sections of Sun et al and the integral cross sections of Morgan and Tennyson reveals angular and energy dependences which resemble those found for the experimental results but there are serious discrepances concerning the absolute magnitudes.
CO在10.0、12.5和15.0 eV冲击能下的电子冲击激发
我们测量了CO在10-15 eV冲击能区,和态的电子冲击激发的微分截面和积分截面。这些测量结果填补了Zobel等人的低能量(阈值约为12 eV)数据与Middleton等人的中能量(20-50 eV)结果之间存在的空白。利用最近的电子飞行时间测量来将相对截面(从能量损失谱中推导出来)置于绝对尺度上。截面与Zobel等人在重叠冲击能处得到的结果非常吻合,并且总是平滑地外推到他们的低能结果。外推到中间能量域,并与Middleton等人的结果进行比较,就不那么清楚了。与Sun等人的理论微分截面和积分截面以及Morgan和Tennyson的积分截面进行比较,可以发现角和能量的依赖关系与实验结果相似,但在绝对量级方面存在严重差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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