Crystal-structure effects in the Ce-edge x-ray-absorption spectrum of: Multiple-scattering resonances and many-body final states
- 15 August 1994
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 50 (8) , 5074-5080
- https://doi.org/10.1103/physrevb.50.5074
Abstract
Here we report the interpretation of all spectral features of Ce x-ray-absorption near-edge structure (XANES) of over a 40 eV range. The local partial unoccupied density of states in the initial state and in the fully relaxed final state have been calculated by the full multiple-scattering approach. The wave function of the excited electron in the final states of the Ce -edge XANES spectrum is found to be determined by the multiple-scattering processes in a large size cluster formed by at least 45 atoms. We predict, in good agreement with the experimental data, the crystal-field splitting of 5d states in the final state =4.0±0.2 eV and its variation from the initial to the final state. The many-body final states for the 2p→5,ɛd transition, arising from the configuration interaction due to mixing of Ce 4f and O 2p valence orbitals, have been calculated taking into account the crystal-field splitting of the 5,ɛd states and they give a full explanation for the low-energy shoulder on the Ce x-ray-absorption spectrum white line that was the object of a long-standing discussion. The origin of the pre-edge peak at about 10 eV below the white line maximum is explained as due to transitions at the bottom of the conduction band.
Keywords
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