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光电离中的光电子波函数:平面波还是库仑波?

Photoelectron wave function in photoionization: plane wave or Coulomb wave?

作者信息

Gozem Samer, Gunina Anastasia O, Ichino Takatoshi, Osborn David L, Stanton John F, Krylov Anna I

机构信息

Department of Chemistry, University of Southern California , Los Angeles, California 90089-0482, United States.

Institute for Theoretical Chemistry, Department of Chemistry, The University of Texas at Austin , Austin, Texas 78712, United States.

出版信息

J Phys Chem Lett. 2015 Nov 19;6(22):4532-40. doi: 10.1021/acs.jpclett.5b01891. Epub 2015 Nov 4.

Abstract

The calculation of absolute total cross sections requires accurate wave functions of the photoelectron and of the initial and final states of the system. The essential information contained in the latter two can be condensed into a Dyson orbital. We employ correlated Dyson orbitals and test approximate treatments of the photoelectron wave function, that is, plane and Coulomb waves, by comparing computed and experimental photoionization and photodetachment spectra. We find that in anions, a plane wave treatment of the photoelectron provides a good description of photodetachment spectra. For photoionization of neutral atoms or molecules with one heavy atom, the photoelectron wave function must be treated as a Coulomb wave to account for the interaction of the photoelectron with the +1 charge of the ionized core. For larger molecules, the best agreement with experiment is often achieved by using a Coulomb wave with a partial (effective) charge smaller than unity. This likely derives from the fact that the effective charge at the centroid of the Dyson orbital, which serves as the origin of the spherical wave expansion, is smaller than the total charge of a polyatomic cation. The results suggest that accurate molecular photoionization cross sections can be computed with a modified central potential model that accounts for the nonspherical charge distribution of the core by adjusting the charge in the center of the expansion.

摘要

绝对总截面的计算需要光电子以及系统初态和末态的精确波函数。后两者所包含的关键信息可以浓缩到一个戴森轨道中。我们采用相关的戴森轨道,并通过比较计算得到的和实验测得的光电离及光剥离光谱,来测试光电子波函数的近似处理方法,即平面波和库仑波。我们发现,对于阴离子,光电子的平面波处理能够很好地描述光剥离光谱。对于含有一个重原子的中性原子或分子的光电离,光电子波函数必须被当作库仑波来处理,以考虑光电子与电离核的 +1 电荷之间的相互作用。对于更大的分子,通常通过使用一个部分(有效)电荷小于 1 的库仑波来实现与实验的最佳吻合。这可能源于这样一个事实,即作为球面波展开原点的戴森轨道质心处的有效电荷,小于多原子阳离子的总电荷。结果表明,通过一种修正的中心势模型可以计算出精确的分子光电离截面,该模型通过调整展开中心的电荷来考虑核的非球形电荷分布。

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