We use modern self-consistent field methods for simulating X-ray emission spectra of surface adsorbates and polymers. Energies and intensities are computed from separately optimized wave functions with full core hole relaxation, where the surfaces and polymers are modelled by, respectively, clusters and oligomers. X-ray intensities are evaluated both from the relaxed wave functions and from ground state frozen orbitals in order to test the validity of the local selection-and the initial and final state rules, and, in the polymer case, to test band theory versus exciton theory interpretations of X-ray emission spectra. We review examples of calculations on surface adsorbates (CO/Cu(100) and C6H6/Cu(100)) and polymers (the polyene sequence).

Self-consistent field calculations of X-ray emission spectra of surface adsorbates and polymers

Carravetta V;
1997

Abstract

We use modern self-consistent field methods for simulating X-ray emission spectra of surface adsorbates and polymers. Energies and intensities are computed from separately optimized wave functions with full core hole relaxation, where the surfaces and polymers are modelled by, respectively, clusters and oligomers. X-ray intensities are evaluated both from the relaxed wave functions and from ground state frozen orbitals in order to test the validity of the local selection-and the initial and final state rules, and, in the polymer case, to test band theory versus exciton theory interpretations of X-ray emission spectra. We review examples of calculations on surface adsorbates (CO/Cu(100) and C6H6/Cu(100)) and polymers (the polyene sequence).
1997
Inglese
7
C2-1
515
516
Sì, ma tipo non specificato
9th International Conference on X-Ray Absorption Fine Structure, GRENOBLE, FRANCE, AUG 26-30, 1996
1
info:eu-repo/semantics/article
262
Agren H;Pettersson; LGM;Carravetta V;Luo Y;Yang L;Vahtras; O
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/199412
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