Coverage dependence of the Fe-induced Fermi-level shift and the two-dimensional electron gas on InAs(110)
- 15 May 2000
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 61 (20) , 13805-13812
- https://doi.org/10.1103/physrevb.61.13805
Abstract
The coverage dependence of the Fe-induced Fermi-level shift on p- and was investigated by angle-resolved photoelectron spectroscopy at 300 K. The Fermi-level position was found to be coverage dependent, exhibiting a maximum at 300 meV above the conduction-band minimum. The coverage dependence is explained by the surface doping model, if inhomogeneities in the Fe-adatom distribution and the resulting ionization probabilities are taken into account. The Fe-adatom distribution is determined by scanning tunneling microscopy. Photoemission spectra provided direct evidence of a two-dimensional electron gas at the Fe-covered surface.
Keywords
This publication has 32 references indexed in Scilit:
- A low-temperature ultrahigh-vacuum scanning tunneling microscope with rotatable magnetic fieldReview of Scientific Instruments, 1997
- Fabrication of spin-current field-effect transistor structuresJournal of Vacuum Science & Technology A, 1997
- Charge Accumulation at InAs SurfacesPhysical Review Letters, 1996
- Cs-induced highest E F jump above InAs(110) conduction-band minimumJournal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures, 1994
- Alkali-Metal-Induced Highest Fermi-Level Pinning Position above Semiconductor Conduction Band MinimumEurophysics Letters, 1994
- Giant band bending induced by Ag on InAs(110) surfaces at low temperaturePhysical Review B, 1993
- Surface electronic structure of InAs(110)Physical Review B, 1993
- Tetrahedral semiconductors: Constancy of the midgap energies with respect to the vacuum levelPhysical Review B, 1988
- Atom-selective imaging of the GaAs(110) surfacePhysical Review Letters, 1987
- Electronic properties of two-dimensional systemsReviews of Modern Physics, 1982