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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Determination of differential cross sections for electron-impact excitation of electronic states of molecular oxygen - art. no. 022706
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Determination of differential cross sections for electron-impact excitation of electronic states of molecular oxygen - art. no. 022706

机译:分子氧的电子态的电子碰撞激发的微分截面的确定。没有。 022706

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摘要

The development and initial results of a method for the determination of differential cross sections for electron scattering by molecular oxygen are described. The method has been incorporated into an existing package of computer programs which, given spectroscopic factors, dissociation energies and an energy-loss spectrum for electron-impact excitation, determine the differential cross sections for each electronic state relative to that of the elastic peak. Enhancements of the original code were made to deal with particular aspects of electron scattering from O-2, such as the overlap of vibrational levels of the ground state with transitions to excited states, and transitions to levels close to and above the dissocation energy in the Herzberg and Schumann-Runge continua. The utility of the code is specifically demonstrated for the "6-eV states" of O-2, where we report absolute differential cross sections for their excitation by 15-eV electrons. In addition an integral cross section, derived from the differential cross section measurements, is also reported fur this excitation process and compared against available theoretical results. The present differential and integral cross sections for excitation of the "6-eV states" of O-2 are the first to be reported in the literature for electron-impact energies below 20 eV. [References: 40]
机译:描述了测定分子氧散射电子的微分截面方法的发展和初步结果。该方法已合并到现有的计算机程序包中,该程序包在给定光谱因子,解离能和电子冲击激发能谱的情况下,确定了每个电子态相对于弹性峰的截面的微分截面。对原始代码进行了增强,以处理从O-2散射电子的特定方面,例如基态的振动能级与跃迁到激发态的交叠,以及跃迁到接近或高于电子离解能的能级。 Herzberg和Schumann-Runge连续。该代码的效用专门针对O-2的“ 6-eV状态”进行了演示,在该报告中,我们报告了由15-eV电子激发的绝对微分截面。另外,在该激励过程中还报告了从微分截面测量得出的积分截面,并与可用的理论结果进行了比较。激发O-2的“ 6-eV态”的当前微分截面和积分截面是文献首次报道的低于20 eV的电子碰撞能量。 [参考:40]

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