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X射线光电子能谱(XPS)和俄歇电子能谱(AES)中一次激发光谱的测定。

Determination of the Primary Excitation Spectra in XPS and AES.

作者信息

Pauly Nicolas, Yubero Francisco, Tougaard Sven

机构信息

Université Libre de Bruxelles, Service de Métrologie Nucléaire (CP 165/84), 50 av. F. D. Roosevelt, B-1050 Brussels, Belgium.

Institute of Materials Science of Sevilla (CSIC-Univ. Sevilla), Av. Américo Vespucio 49, E-41092 Sevilla, Spain.

出版信息

Nanomaterials (Basel). 2023 Jan 13;13(2):339. doi: 10.3390/nano13020339.

Abstract

This paper reviews a procedure that allows for extracting primary photoelectron or Auger electron emissions from homogeneous isotropic samples. It is based on a quantitative dielectric description of the energy losses of swift electrons travelling nearby surfaces in presence of stationary positive charges. The theory behind the modeling of the electron energy losses, implemented in a freely available QUEELS-XPS software package, takes into account intrinsic and extrinsic effects affecting the electron transport. The procedure allows for interpretation of shake-up and multiplet structures on a quantitative basis. We outline the basic theory behind it and illustrate its capabilities with several case examples. Thus, we report on the angular dependence of the intrinsic and extrinsic Al 2s photoelectron emission from aluminum, the shake-up structure of the Ag 3d, Cu 2p, and Ce 3d photoelectron emission from silver, CuO and CeO, respectively, and the quantification of the two-hole final states contributing to the LMM Auger electron emission of copper. These examples illustrate the procedure, that can be applied to any homogeneous isotropic material.

摘要

本文回顾了一种从均匀各向同性样品中提取初级光电子或俄歇电子发射的方法。它基于对在存在静止正电荷的情况下在表面附近传播的快速电子能量损失的定量介电描述。在免费提供的QUEELS-XPS软件包中实现的电子能量损失建模背后的理论考虑了影响电子传输的内在和外在效应。该方法允许在定量基础上解释振激和多重峰结构。我们概述了其背后的基本理论,并用几个实例说明了其功能。因此,我们报告了铝的本征和非本征Al 2s光电子发射的角度依赖性,银、CuO和CeO中Ag 3d、Cu 2p和Ce 3d光电子发射的振激结构,以及对铜的LMM俄歇电子发射有贡献的双空穴终态的量化。这些实例说明了该方法,它可应用于任何均匀各向同性材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d60/9865875/86b275da53dd/nanomaterials-13-00339-g001.jpg

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