螺旋钻
放松(心理学)
原子物理学
多重态
物理
铜
锌
谱线
材料科学
量子力学
心理学
社会心理学
冶金
作者
S. P. Kowalczyk,R. A. Pollak,F. R. McFeely,L. Ley,D. A. Shirley
出处
期刊:Physical review
日期:1973-09-15
卷期号:8 (6): 2387-2391
被引量:236
标识
DOI:10.1103/physrevb.8.2387
摘要
The ${L}_{2}{M}_{45}{M}_{45}$ and ${L}_{3}{M}_{45}{M}_{45}$ Auger spectra of clean metallic copper and zinc were measured. A theory was developed to predict the Auger energies. The theory employs experimental electron binding energies, which were also measured, two-electron integrals, and Hartree-Fock energies. It accounts for multiplet splitting in the ${d}^{8}$ final state, predicting structure in excellent agreement with experiment in zinc and in very good agreement in copper. It also accounts for "static" atomic relaxation and for static extra-atomic relaxation (screening), which is related to the Friedel theory of alloys. The theory developed here predicts the Auger energies to within 1 eV in zinc and 2-3 eV in copper. Since atomic integrals were used, the success of the theory implies that an atomistic approach to Auger energies is valid for these metals. The magnitude of the extra-atomic relaxation energy (\ensuremath{\sim} 10 eV) suggests that it may be a crucial factor in Auger energy shifts arising from chemical environment or surface condition.
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