本工作采用组态相互作用波函数计算了He和Be2 + 离子高位双激发态3 Pe 和3 De 的能量和精细结构 ,并计算相对论修正、质量极化、振子强度和跃迁率。我们采用新量子数集K、T、A分析双激发态里德伯系列的变化规则 ,计算结果与试验结果符...本工作采用组态相互作用波函数计算了He和Be2 + 离子高位双激发态3 Pe 和3 De 的能量和精细结构 ,并计算相对论修正、质量极化、振子强度和跃迁率。我们采用新量子数集K、T、A分析双激发态里德伯系列的变化规则 ,计算结果与试验结果符合很好。展开更多
This paper uses the two-centre atomic orbital close-coupling method to study the ionization and the single electron capture in collision of highly charged Ar^16+ ions with He atoms in the velocity range of 1.2-1.9 a....This paper uses the two-centre atomic orbital close-coupling method to study the ionization and the single electron capture in collision of highly charged Ar^16+ ions with He atoms in the velocity range of 1.2-1.9 a.u.. The relative importance of single ionization (SI) to single capture (SC) is explored. The comparison between the calculation and experimental data shows that the SI/SC cross section ratios from this work are in good agreement with experimental data. The total single electron ionization cross sections and the total single electron capture cross sections are also given for this collision. The investigation of the partial electron capture cross section shows a general tendency of capture to larger n and l with increasing velocity from 1.2 to 1.9 a.u..展开更多
基金Project supported by the Excellent young scholars Research Fund of Beijing Institute of Technology,China (Grant No 000Y07-29)the National Natural Science Foundation of China (Grant NO 10674015)
文摘This paper uses the two-centre atomic orbital close-coupling method to study the ionization and the single electron capture in collision of highly charged Ar^16+ ions with He atoms in the velocity range of 1.2-1.9 a.u.. The relative importance of single ionization (SI) to single capture (SC) is explored. The comparison between the calculation and experimental data shows that the SI/SC cross section ratios from this work are in good agreement with experimental data. The total single electron ionization cross sections and the total single electron capture cross sections are also given for this collision. The investigation of the partial electron capture cross section shows a general tendency of capture to larger n and l with increasing velocity from 1.2 to 1.9 a.u..