Competition between initial- and final-state effects in valence- and core-level x-ray photoemission of Sb-doped
- 15 January 1999
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 59 (3), 1792-1799
- https://doi.org/10.1103/physrevb.59.1792
Abstract
High resolution valence- and core-level photoemission spectra of undoped and 3% Sb-doped are presented. Conduction-band occupation due to Sb doping in leads to a shift of valence-band features to high binding energy. However, the shift is less than the width of the occupied part of the conduction band. This is attributed to a shrinkage of the bulk band gap with doping, arising from an attractive dopant electron interaction and screening of the Coulomb repulsion between valence and conduction electrons. Core-level spectra provide evidence for strong screening by the conduction electron gas in 3% Sb-doped giving rise to “screened” and “unscreened” final-state peaks in photoemission. The dominant screening response involves excitation of conduction electron plasmons.
Keywords
This publication has 26 references indexed in Scilit:
- Distribution of occupation numbers in finite Fermi systemsand role of interaction in chaos and thermalizationPhysical Review E, 1997
- Band-gap narrowing and band structure in degenerate tin oxide () filmsPhysical Review B, 1991
- Reactively sputtered ZnO: Al films for energy-efficient windowsThin Solid Films, 1988
- Band-gap widening in heavily Sn-dopedPhysical Review B, 1984
- Is the rigid band model applicable to the sodium tungsten bronzes?Solid State Communications, 1981
- Band-gap narrowing in heavily doped many-valley semiconductorsPhysical Review B, 1981
- Failure of the rigid band model in NaxWO3: An XPS studySolid State Communications, 1981
- Band-Gap Assignment in Snby Two-Photon SpectroscopyPhysical Review Letters, 1978
- Final-state effects in the x-ray photoelectron spectra of cubic sodium-tungsten bronzesPhysical Review B, 1977
- Anomalous Optical Absorption Limit in InSbPhysical Review B, 1954