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Electrostatic Potential Screened by a Two-Dimensional Electron System: A Real-Space Observation by Scanning-Tunneling Spectroscopy
59
Citations
12
References
2006
Year
EngineeringReduced PotentialsElectrostatic Potential ScreenedChemistryElectron PhysicTunneling MicroscopyElectron MicroscopyElectron SpectroscopyNanoelectronicsElectronic StatesSurface ReconstructionPhysicsElectrostatic Potential ProfileQuantum ChemistrySurface CharacterizationNatural SciencesTwo-dimensional Electron SystemSurface ScienceApplied PhysicsCondensed Matter PhysicsSurface AnalysisElectron MicroscopeScanning-tunneling Spectroscopy
Scanning-tunneling spectroscopy at 5 K was used to investigate the electrostatic potential profile on the Si(111)-square root of 3 x square root of 3 Ag surface at subnanometer spatial resolution. The potential was measured from an energy-level shift of electronic states on the surface. The potential images obtained reveal that the potential drops around the steps and Ag adsorbates, upon which positive charges are presumably accumulated. The profiles of the reduced potentials are explained with the screening of potential due to the charges by two-dimensional electron gas (2DEG) existing on the surface. The Friedel oscillation, which results from the screening and has a period of the half Fermi wavelength of the 2DEG, was also observed in the potential images.
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