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N2 和 CO 的光电子能谱中的振动分支比:干涉和衍射效应。

Vibrational branching ratios in the photoelectron spectra of N2 and CO: interference and diffraction effects.

机构信息

Departamento de Química, Módulo 13, Universidad Autónoma de Madrid, 28049 Madrid, Spain.

出版信息

Phys Chem Chem Phys. 2012 Aug 21;14(31):10853-71. doi: 10.1039/c2cp40693d. Epub 2012 Jul 6.

Abstract

We present a detailed account of existing theoretical methods specially designed to provide vibrationally resolved photoionization cross sections of simple molecules within the Born-Oppenheimer approximation, with emphasis on newly developed methods based on density functional theory. The performance of these methods is shown for the case of N(2) and CO photoionization. Particular attention is paid to the region of high photon energies, where the electron wavelength is comparable to the bond length and, therefore, two-center interferences and diffraction are expected to occur. As shown in a recent work [Canton et al., Proc. Natl. Acad. Sci. U. S. A., 2011, 108, 7302-7306], the main experimental difficulty, which is to extract the relatively small diffraction features from the rapidly decreasing cross section, can be easily overcome by determining ratios of vibrationally resolved photoelectron spectra and existing theoretical calculations. From these ratios, one can thus get direct information about the molecular geometry. In this work, results obtained in a wide range of photon energies and for many different molecular orbitals of N(2) and CO are discussed and compared with the available experimental measurements. From this comparison, limitations and further possible improvements of the existing theoretical methods are discussed. The new results presented in the manuscript confirm that the conclusions reported in the above reference are of general validity.

摘要

我们详细介绍了专门设计用于在 Born-Oppenheimer 近似下提供简单分子振动分辨光电子能谱的现有理论方法,重点介绍了基于密度泛函理论的新方法。这些方法的性能通过 N(2)和 CO 光电子能谱的实例进行了展示。特别关注高光子能量区域,在该区域中,电子波长与键长相当,因此预计会发生双中心干涉和衍射。正如最近的一项工作 [Canton 等人,Proc. Natl. Acad. Sci. U. S. A.,2011,108,7302-7306] 所示,主要的实验困难是从迅速减小的截面中提取相对较小的衍射特征,这可以通过确定振动分辨光电子能谱和现有理论计算的比值来轻松克服。通过这些比值,可以直接获得关于分子几何形状的信息。在这项工作中,讨论并比较了 N(2)和 CO 的许多不同分子轨道在很宽的光子能量范围内获得的结果与现有实验测量结果。通过这种比较,讨论了现有理论方法的局限性和进一步的可能改进。本文呈现的新结果证实了上述参考文献中报告的结论具有普遍适用性。

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