Physical Review Letters · 2016 · 35 citations · 18 references
EngineeringMagnetic ResonanceIron NitrideTunneling BackgroundSurface OrbitalsTunneling MicroscopyElectron MicroscopyElectron SpectroscopySurface ReconstructionMaterials SciencePhysicsAtomic PhysicsMicroanalysisPhysical ChemistrySurface CharacterizationSpintronicsOrbital SelectivityScanning Probe MicroscopySurface ScienceApplied PhysicsCondensed Matter PhysicsSurface Analysis
In scanning tunneling microscopy, orbital selectivity of the tunneling process can make the topographic image dependent on a tip-surface distance. We have found reproducible dependence of the images on the distance for a monatomic layer of iron nitride formed on a Cu(001) surface. Observed atomic images systematically change between a regular dot array and a dimerized structure depending on the tip-surface distance, which turns out to be the only relevant parameter in the image variation. An accompanied change in the weight of Fe-3d local density of states to a tunneling background was detected in dI/dV spectra. These have been attributed to a shift in surface orbitals detected by the tip from the d states to the s/p states with increasing the tip-surface distance, consistent with an orbital assignment from first-principles calculations.
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Theory of the scanning tunneling microscope
J. Tersoff, D. R. Hamann · Physical review. B, Condensed matter · 1985 · 4.3K citations
Tunneling Spectroscopy of bcc (001) Surface States
Joseph A. Stroscio, D. T. Pierce, Angela Davies et al. · Physical Review Letters · 1995 · 264 citations