Applied Physics Letters · 2001 · 17 citations · 10 references
EngineeringMicroscopyNanometer-scale ResolutionEfms SpectraSemiconductor NanostructuresSemiconductorsElectronic DevicesTunneling MicroscopyElectron MicroscopyMicroscopy MethodQuantum MaterialsLt–gaas EpilayersLight MicroscopyCompound SemiconductorElectrical EngineeringPhysicsNanotechnologySemiconductor MaterialNanometer-scale Spatial ResolutionNatural SciencesSpectroscopyScanning Probe MicroscopyApplied Physics
Instrumentation has been devised by coupling electric field modulation spectroscopy (EFMS) with scanning tunneling microscopy (STM) that enables the investigation of electronic band structures in semiconductors with a nanometer-scale spatial resolution. Model experiments using low-temperature-grown GaAs (LT–GaAs) epifilms show that a difference as small as 0.01 eV in electronic energy gaps between the GaAs substrate and the LT–GaAs epilayers can be distinguished in the EFMS spectra, demonstrating the high energy, as well as spatial, resolution of the STM–EFMS.
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Energy-Band Structure of Germanium and Silicon: The k·p Method
M. Cardona, Fred H. Pollak · Physical Review · 1966 · 640 citations
Electrostatic sample-tip interactions in the scanning tunneling microscope
M. T. McEllistrem, G. Haase, D. Chen et al. · Physical Review Letters · 1993 · 220 citations
First-principles theory of scanning tunneling microscopy
Masaru Tsukada, Katsuyoshi Kobayashi, Nobuyuki Isshiki et al. · Surface Science Reports · 1991 · 126 citations