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Photoabsorption in carbon monoxide: Stieltjes–Tchebycheff calculations in the separated-channel static-exchange approximation

机译:一氧化碳中的光吸收:分离通道静态交换近似中的Stieltjes–Tchebycheff计算

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摘要

Theoretical investigations of total and partial-channel photoabsorption cross sections in carbon monoxide are reported employing the Stieltjes–Tchebycheff (S–T) technique and separated-channel static-exchange calculations. Pseudospectra of discrete transition frequencies and oscillator strengths appropriate for individual excitations of each of the six occupied molecular orbitals are constructed using Hartree–Fock core functions and normalizable Gaussian orbitals to describe the photoexcited and ejected electrons. Use of relatively large basis sets of compact and diffuse functions insures the presence of appropriate discrete Rydberg states in the calculations and provides sufficiently dense pseudospectra for the determination of convergent photoionization cross sections from the S–T technique. The calculated discrete vertical electronic excitation spectra are in very good agreement with measured band positions and intensities, and the partial-channel photoionization cross sections are in correspondingly good accord with recent electron–electron (e,2e) coincidence, synchrotron-radiation, and line-source branching-ratio measurements. Predicted resonance features in the X, B, O2s−1, and carbon K-shell channels are in particularly good agreement with the positions and intensities in the measured cross sections. A modest discrepancy between experiment and theory in the A-channel cross section is tentatively attributed to channel-coupling mechanisms associated with opening of the 1pi shell. The total vertical electronic S–T photoionization cross section for parent-ion production is in excellent agreement with recent electron–ion coincidence measurements. Comparisons are made between ionization processes in carbon monoxide and in the previously studied nitrogen molecule, and similarities and differences in the respective cross sections are clarified in terms of conventional molecular-orbital theory.
机译:使用Stieltjes-Tchebycheff(S-T)技术和分离通道静态交换计算,对一氧化碳中全部通道和部分通道的光吸收截面进行了理论研究。利用Hartree-Fock核函数和可归一化的高斯轨道来构造光激发和射出的电子,从而构建了适合于六个占据的分子轨道中的每一个的单独激发的离散跃迁频率和振荡器强度的伪光谱。使用相对较大的紧致和扩散函数基集可确保在计算中存在适当的离散里德堡态,并为从S-T技术确定会聚光电离截面提供足够稠密的伪光谱。计算出的离散垂直电子激发光谱与测得的能带位置和强度非常吻合,并且部分通道的光电离截面也与最近的电子-电子(e,2e)重合,同步辐射和谱线非常一致。源分支比测量。 X,B,O2s-1和碳K壳通道中的预测共振特征与测量横截面中的位置和强度特别吻合。 A通道横截面的实验与理论之间的适度差异暂时归因于与1pi外壳打开相关的通道耦合机制。用于母体离子生产的总的垂直电子S-T光电离截面与最近的电子-离子符合测量结果非常吻合。对一氧化碳和先前研究的氮分子中的电离过程进行了比较,并根据常规分子轨道理论阐明了各个截面的相似性和差异。

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