Thomas H. Baum, Carl E. Larson, et al.
Journal of Organometallic Chemistry
In the presence of metallic states, deposition-generated midgap levels at the semiconductor surface evolve into resonances that accommodate the fractional charge density that ultimately determines the Fermi level and hence the Schottky-barrier height. This concept is applied to calculate both the barrier heights of GaAs for nonalloyed metal-semiconductor interfaces, and the index-of-interface behavior for 15 tetrahedrally coordinated semiconductors. © 1989 The American Physical Society.
Thomas H. Baum, Carl E. Larson, et al.
Journal of Organometallic Chemistry
Min Yang, Jeremy Schaub, et al.
Technical Digest-International Electron Devices Meeting
C.M. Brown, L. Cristofolini, et al.
Chemistry of Materials
K.N. Tu
Materials Science and Engineering: A