确定绝对微分电子-分子(原子)散射截面的原理和程序

J. C. Nickel, P. Zetner, G. Shen, S. Trajmar
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引用次数: 172

摘要

描述了一套测量电子对分子(原子)物种的绝对弹性和非弹性微分截面(DCS)的方法。首先采用相对流技术,用氦气在各个冲击能量和冲击角度下的弹性DCS测量了测试气体的弹性DCS,得到了测试气体的弹性DCS。然后,利用包含弹性和非弹性特征的能量损失谱,通过对背景散射进行校正,得到每个冲击能量和角度下的弹性集散度。为了将能量损失谱中的非弹性特征的振幅与弹性峰的振幅联系起来,需要知道探测器的能量响应函数。给出了测量该能量响应函数的方法。讨论了从具有重叠非弹性特征的复杂分子光谱中提取非弹性DCS信息的问题。
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Principles and procedures for determining absolute differential electron-molecule (atom) scattering cross sections
A set of procedures for measuring the absolute elastic and inelastic differential cross sections (DCS) for electronimpact on molecular (atomic) species is described. First the elastic DCS of a test gas is obtained using a relative flow technique which measures the elastic DCS of the test gas in terms of that of helium at each impact energy and angle. Then the inelastic DCS is obtained in terms of the elastic DCS at each impact energy and angle by means of an energy-loss spectrum, corrected for background scattering, containing both elastic and inelastic features. To relate the amplitudes of the inelastic features in the energy-loss spectrum to the amplitude of the elastic peak, it is necessary to know the energy response function of the detector. A procedure for measuring this energy response function is given. The problem of extracting inelastic DCS information from complicated molecular spectra with overlapping inelastic features is discussed.
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