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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Generalization of the atomic random-phase-approximation method for diatomic molecules: N-2 photoionization cross-section calculations - art. no. 032704
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Generalization of the atomic random-phase-approximation method for diatomic molecules: N-2 photoionization cross-section calculations - art. no. 032704

机译:双原子分子的原子随机相近似方法的一般化:N-2光电离截面的计算-艺术。没有。 032704

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Partial and total photoionization cross sections of N-2 molecule are calculated using the generalization of the random-phase approximation (RPA) which earlier has been successfully applied to the description of the atomic photoionization processes. According to this method, at first the Hartree-Fock (HF) ground-state wave functions are calculated in prolate spheroidal coordinates using the fixed-nuclei approximation. With their help the zero order basis set of single particle Hartree-Fock wave functions containing both discrete excited states and continuous spectrum is calculated in the field of a frozen core of a singly charged ion. The calculations are performed for all four valence shells of N-2 molecule, 3 sigma(g), 1 pi(u), 2 sigma(u), and 2 sigma(g), with the intershell correlations fully taken into account within the RPA method. It is demonstrated that different intershell correlations. especially between three outer shells, play an important role in photoionization process. Examples of the influence of intershell correlations on several transitions sire presented. Partial and total photoionization cross sections of N-2 molecule obtained by this method in the photon energy range from ionization threshold up to 70 eV are in a good agreement with the existing experimental data and with, the recent RPA calculations [Cacelli et al., Phys. Rev. A 57, 1895 (1998)]. [References: 38]
机译:N-2分子的部分和全部光电离截面是使用随机相逼近度(RPA)的泛化计算的,后者已在早期成功地应用于原子光电离过程的描述。根据此方法,首先使用固定核近似在长球体坐标中计算Hartree-Fock(HF)基态波函数。借助它们的帮助,在单电荷离子冻结核场中计算了包含离散激发态和连续光谱的单粒子Hartree-Fock波函数的零阶基组。对N-2分子的三个价壳,3 sigma(g),1 pi(u),2 sigma(u)和2 sigma(g)进行了计算,并充分考虑了壳内相关性。 RPA方法。证明了不同的壳间相关性。特别是在三个外壳之间,在光电离过程中起着重要作用。提出了壳间相关对几个过渡的影响的例子。通过此方法获得的N-2分子在电离阈值至70 eV的光子能量范围内的部分和全部光电离截面与现有实验数据和最近的RPA计算[Cacelli等,物理修订版A 57,1895(1998)]。 [参考:38]

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