Publication | Closed Access
Voltage-dependent scanning-tunneling microscopy of a crystal surface: Graphite
297
Citations
9
References
1985
Year
EngineeringMicroscopyBulk Electronic StatesTunneling MicroscopyElectron MicroscopyNanoelectronicsVoltage-dependent TunnelingVoltage-dependent Scanning-tunneling MicroscopyMaterials SciencePhysicsIdeal Stm ExperimentSurface CharacterizationNatural SciencesSpectroscopySurface ScienceApplied PhysicsCondensed Matter PhysicsScanning Probe MicroscopyGrapheneSurface AnalysisGraphene Nanoribbon
We discuss the possible application of the scanning tunneling microscope (STM) to surface electronic spectroscopy, with an explicit calculation of the voltage-dependent tunneling current for an ideal STM experiment performed on graphite. We study how surface and bulk electronic states are reflected in the tunneling J-V spectra, and show that empty surface states of graphite may be well discriminated against bulklike structures by considering STM spectra at different tip-surface separations.
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