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Molecular orbital tomography for adsorbed molecules : is a correct description of the final state really unimportant?

机译:吸附分子的分子轨道层析成像:对最终状态的正确描述真的不重要吗?

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摘要

The application of the 'orbital tomography' technique to obtain direct images of molecular orbitals of adsorbed molecules from angle-resolved photoemission data, first proposed by Puschnig et al (2009 Science 326 702), is an extremely attractive idea, but is based on the assumption that the photoemission can be described by a plane wave final state. It is well known that this neglect of the spherical-wave nature of the initial emission and of the role of final state scattering both within the molecule and from the substrate can lead to serious errors. Despite this, in the albeit simple systems studied so far the method appears to work reasonably well. Here we provide a detailed critique of this problem, highlight situations in which the orbital tomography approach is likely to lead to major errors, and propose test experiments that could provide clear information on the extent of these problems.
机译:Puschnig等人(2009 Science 326 702)首先提出的“轨道断层扫描”技术从角度分辨的光发射数据获取吸附分子的分子轨道的直接图像的应用是一个极具吸引力的想法,但它基于假设可以通过平面波最终状态描述光发射。众所周知,对分子内部以及从底物的初始发射的球形波性质和最终状态散射的作用的忽视会导致严重的误差。尽管如此,尽管到目前为止已经研究了简单的系统,但该方法似乎仍能很好地工作。在这里,我们对这个问题进行了详细的评论,重点介绍了轨道层析成像方法可能导致重大错误的情况,并提出了可以提供有关这些问题程度的清晰信息的测试实验。

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